[{"citation":{"chicago":"Akbulut Irmak, Emine Fulya, Hendrik Hanses, Ilona Horwath, and Thomas Tröster. “Case Study III: Challenges of Lightweight Design, Vehicles, and Rescuers.” In <i>Climate Protection, Resource Efficiency, and Sustainable Engineering</i>, edited by Ilona Horwath and Swetlana Schweizer. Bielefeld, Germany: transcript Verlag, 2023. <a href=\"https://doi.org/10.14361/9783839463772-006\">https://doi.org/10.14361/9783839463772-006</a>.","short":"E.F. Akbulut Irmak, H. Hanses, I. Horwath, T. Tröster, in: I. Horwath, S. Schweizer (Eds.), Climate Protection, Resource Efficiency, and Sustainable Engineering, transcript Verlag, Bielefeld, Germany, 2023.","apa":"Akbulut Irmak, E. F., Hanses, H., Horwath, I., &#38; Tröster, T. (2023). Case Study III: Challenges of lightweight design, vehicles, and rescuers. In I. Horwath &#38; S. Schweizer (Eds.), <i>Climate Protection, Resource Efficiency, and Sustainable Engineering</i>. transcript Verlag. <a href=\"https://doi.org/10.14361/9783839463772-006\">https://doi.org/10.14361/9783839463772-006</a>","ieee":"E. F. Akbulut Irmak, H. Hanses, I. Horwath, and T. Tröster, “Case Study III: Challenges of lightweight design, vehicles, and rescuers,” in <i>Climate Protection, Resource Efficiency, and Sustainable Engineering</i>, I. Horwath and S. Schweizer, Eds. Bielefeld, Germany: transcript Verlag, 2023.","ama":"Akbulut Irmak EF, Hanses H, Horwath I, Tröster T. Case Study III: Challenges of lightweight design, vehicles, and rescuers. In: Horwath I, Schweizer S, eds. <i>Climate Protection, Resource Efficiency, and Sustainable Engineering</i>. transcript Verlag; 2023. doi:<a href=\"https://doi.org/10.14361/9783839463772-006\">10.14361/9783839463772-006</a>","bibtex":"@inbook{Akbulut Irmak_Hanses_Horwath_Tröster_2023, place={Bielefeld, Germany}, title={Case Study III: Challenges of lightweight design, vehicles, and rescuers}, DOI={<a href=\"https://doi.org/10.14361/9783839463772-006\">10.14361/9783839463772-006</a>}, booktitle={Climate Protection, Resource Efficiency, and Sustainable Engineering}, publisher={transcript Verlag}, author={Akbulut Irmak, Emine Fulya and Hanses, Hendrik and Horwath, Ilona and Tröster, Thomas}, editor={Horwath, Ilona and Schweizer, Swetlana}, year={2023} }","mla":"Akbulut Irmak, Emine Fulya, et al. “Case Study III: Challenges of Lightweight Design, Vehicles, and Rescuers.” <i>Climate Protection, Resource Efficiency, and Sustainable Engineering</i>, edited by Ilona Horwath and Swetlana Schweizer, transcript Verlag, 2023, doi:<a href=\"https://doi.org/10.14361/9783839463772-006\">10.14361/9783839463772-006</a>."},"publication":"Climate Protection, Resource Efficiency, and Sustainable Engineering","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"book_chapter","place":"Bielefeld, Germany","date_created":"2023-11-07T11:04:03Z","date_updated":"2025-06-06T07:52:36Z","publication_status":"published","publication_identifier":{"isbn":["9783837663778","9783839463772"],"issn":["2703-1543","2703-1551"]},"author":[{"full_name":"Akbulut Irmak, Emine Fulya","last_name":"Akbulut Irmak","orcid":"0000-0002-1338-810X","first_name":"Emine Fulya","id":"72008"},{"id":"64527","last_name":"Hanses","first_name":"Hendrik","full_name":"Hanses, Hendrik"},{"id":"68836","first_name":"Ilona","last_name":"Horwath","full_name":"Horwath, Ilona"},{"last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas","id":"553"}],"year":"2023","title":"Case Study III: Challenges of lightweight design, vehicles, and rescuers","status":"public","editor":[{"last_name":"Horwath","first_name":"Ilona","full_name":"Horwath, Ilona"},{"full_name":"Schweizer, Swetlana","last_name":"Schweizer","first_name":"Swetlana"}],"doi":"10.14361/9783839463772-006","user_id":"72008","_id":"48642","publisher":"transcript Verlag","language":[{"iso":"eng"}]},{"doi":"10.1007/s12289-023-01785-w","language":[{"iso":"eng"}],"article_number":"59","intvolume":"        16","article_type":"original","date_updated":"2025-06-06T08:18:51Z","publication_status":"published","publication_identifier":{"issn":["1960-6206","1960-6214"]},"author":[{"id":"83141","full_name":"Borgert, Thomas","last_name":"Borgert","first_name":"Thomas"},{"full_name":"Milaege, Dennis","first_name":"Dennis","last_name":"Milaege"},{"id":"8938","full_name":"Schweizer, Swetlana","last_name":"Schweizer","first_name":"Swetlana"},{"last_name":"Homberg","first_name":"Werner","full_name":"Homberg, Werner","id":"233"},{"id":"43720","first_name":"Mirko","last_name":"Schaper","full_name":"Schaper, Mirko"},{"id":"553","last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas"}],"title":"Potentials of a friction-induced recycling process to improve resource and energy efficiency in manufacturing technology","year":"2023","department":[{"_id":"156"},{"_id":"149"},{"_id":"321"},{"_id":"9"},{"_id":"158"}],"type":"journal_article","keyword":["General Materials Science"],"date_created":"2023-10-02T06:59:53Z","abstract":[{"text":"<jats:title>Abstract</jats:title><jats:p>Efforts to enhance sustainability in all areas of life are increasing worldwide. In the field of manufacturing technology, a wide variety of approaches are being used to improve both resource and energy efficiency. Efficiency as well as sustainability can be improved by creating a circular economy or through energy-efficient recycling processes. As part of the interdisciplinary research group \"Light—Efficient—Mobile\" investigations on the energy-efficient friction-induced recycling process have been carried out at the department of Forming and Machining Technology at Paderborn University. E.g. using the friction-induced recycling process, different formless solid aluminum materials can be direct recycled into semi-finished products in an energy-efficient manner. The results of investigations with regard to the influence of the geometrical shape and filling rate of the aluminum particles to be recycled as well as the rotational speed of the continuously rotating wheel are explained in this paper. In addition to the recycling of aluminum chips, aluminum particles like powders from the field of additive manufacturing are processed. Based on these results, the future potentials of solid-state recycling processes and their contribution to the circular economy are discussed. The main focus here is on future interdisciplinary research projects to achieve circularity in the manufacturing of user-individual semi-finished products as well as the possibility to selectively adjust the product properties with the continuous recycling process.</jats:p>","lang":"eng"}],"issue":"6","publication":"International Journal of Material Forming","volume":16,"user_id":"15952","publisher":"Springer Science and Business Media LLC","_id":"47536","status":"public","quality_controlled":"1","citation":{"mla":"Borgert, Thomas, et al. “Potentials of a Friction-Induced Recycling Process to Improve Resource and Energy Efficiency in Manufacturing Technology.” <i>International Journal of Material Forming</i>, vol. 16, no. 6, 59, Springer Science and Business Media LLC, 2023, doi:<a href=\"https://doi.org/10.1007/s12289-023-01785-w\">10.1007/s12289-023-01785-w</a>.","ama":"Borgert T, Milaege D, Schweizer S, Homberg W, Schaper M, Tröster T. Potentials of a friction-induced recycling process to improve resource and energy efficiency in manufacturing technology. <i>International Journal of Material Forming</i>. 2023;16(6). doi:<a href=\"https://doi.org/10.1007/s12289-023-01785-w\">10.1007/s12289-023-01785-w</a>","bibtex":"@article{Borgert_Milaege_Schweizer_Homberg_Schaper_Tröster_2023, title={Potentials of a friction-induced recycling process to improve resource and energy efficiency in manufacturing technology}, volume={16}, DOI={<a href=\"https://doi.org/10.1007/s12289-023-01785-w\">10.1007/s12289-023-01785-w</a>}, number={659}, journal={International Journal of Material Forming}, publisher={Springer Science and Business Media LLC}, author={Borgert, Thomas and Milaege, Dennis and Schweizer, Swetlana and Homberg, Werner and Schaper, Mirko and Tröster, Thomas}, year={2023} }","apa":"Borgert, T., Milaege, D., Schweizer, S., Homberg, W., Schaper, M., &#38; Tröster, T. (2023). Potentials of a friction-induced recycling process to improve resource and energy efficiency in manufacturing technology. <i>International Journal of Material Forming</i>, <i>16</i>(6), Article 59. <a href=\"https://doi.org/10.1007/s12289-023-01785-w\">https://doi.org/10.1007/s12289-023-01785-w</a>","ieee":"T. Borgert, D. Milaege, S. Schweizer, W. Homberg, M. Schaper, and T. Tröster, “Potentials of a friction-induced recycling process to improve resource and energy efficiency in manufacturing technology,” <i>International Journal of Material Forming</i>, vol. 16, no. 6, Art. no. 59, 2023, doi: <a href=\"https://doi.org/10.1007/s12289-023-01785-w\">10.1007/s12289-023-01785-w</a>.","chicago":"Borgert, Thomas, Dennis Milaege, Swetlana Schweizer, Werner Homberg, Mirko Schaper, and Thomas Tröster. “Potentials of a Friction-Induced Recycling Process to Improve Resource and Energy Efficiency in Manufacturing Technology.” <i>International Journal of Material Forming</i> 16, no. 6 (2023). <a href=\"https://doi.org/10.1007/s12289-023-01785-w\">https://doi.org/10.1007/s12289-023-01785-w</a>.","short":"T. Borgert, D. Milaege, S. Schweizer, W. Homberg, M. Schaper, T. Tröster, International Journal of Material Forming 16 (2023)."}},{"language":[{"iso":"eng"}],"doi":"10.13044/j.sdewes.d11.0450","author":[{"full_name":"Pfeifer, Florian","last_name":"Pfeifer","first_name":"Florian","id":"22717"},{"full_name":"Knorr, Lukas","last_name":"Knorr","first_name":"Lukas","id":"90391"},{"id":"88614","first_name":"Florian","last_name":"Schlosser","full_name":"Schlosser, Florian"},{"id":"338","first_name":"Thorsten","last_name":"Marten","orcid":"0009-0001-6433-7839","full_name":"Marten, Thorsten"},{"full_name":"Tröster, Thomas","last_name":"Tröster","first_name":"Thomas","id":"553"}],"publication_identifier":{"issn":["1848-9257"]},"title":"Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes","year":"2023","intvolume":"        11","date_updated":"2025-06-06T08:20:26Z","publication_status":"published","date_created":"2023-08-14T15:25:01Z","department":[{"_id":"9"},{"_id":"149"},{"_id":"321"}],"keyword":["Energy Engineering and Power Technology","Water Science and Technology","Environmental Science (miscellaneous)","Renewable Energy","Sustainability and the Environment"],"type":"journal_article","publication":"Journal of Sustainable Development of Energy, Water and Environment Systems","issue":"3","publisher":"SDEWES Centre","_id":"46486","page":"1-20","volume":11,"user_id":"15952","status":"public","citation":{"apa":"Pfeifer, F., Knorr, L., Schlosser, F., Marten, T., &#38; Tröster, T. (2023). Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes. <i>Journal of Sustainable Development of Energy, Water and Environment Systems</i>, <i>11</i>(3), 1–20. <a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">https://doi.org/10.13044/j.sdewes.d11.0450</a>","ieee":"F. Pfeifer, L. Knorr, F. Schlosser, T. Marten, and T. Tröster, “Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes,” <i>Journal of Sustainable Development of Energy, Water and Environment Systems</i>, vol. 11, no. 3, pp. 1–20, 2023, doi: <a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">10.13044/j.sdewes.d11.0450</a>.","chicago":"Pfeifer, Florian, Lukas Knorr, Florian Schlosser, Thorsten Marten, and Thomas Tröster. “Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes.” <i>Journal of Sustainable Development of Energy, Water and Environment Systems</i> 11, no. 3 (2023): 1–20. <a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">https://doi.org/10.13044/j.sdewes.d11.0450</a>.","short":"F. Pfeifer, L. Knorr, F. Schlosser, T. Marten, T. Tröster, Journal of Sustainable Development of Energy, Water and Environment Systems 11 (2023) 1–20.","mla":"Pfeifer, Florian, et al. “Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes.” <i>Journal of Sustainable Development of Energy, Water and Environment Systems</i>, vol. 11, no. 3, SDEWES Centre, 2023, pp. 1–20, doi:<a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">10.13044/j.sdewes.d11.0450</a>.","ama":"Pfeifer F, Knorr L, Schlosser F, Marten T, Tröster T. Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes. <i>Journal of Sustainable Development of Energy, Water and Environment Systems</i>. 2023;11(3):1-20. doi:<a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">10.13044/j.sdewes.d11.0450</a>","bibtex":"@article{Pfeifer_Knorr_Schlosser_Marten_Tröster_2023, title={Ecological and Economic Feasibility of Inductive Heating for Sustainable Press Hardening Processes}, volume={11}, DOI={<a href=\"https://doi.org/10.13044/j.sdewes.d11.0450\">10.13044/j.sdewes.d11.0450</a>}, number={3}, journal={Journal of Sustainable Development of Energy, Water and Environment Systems}, publisher={SDEWES Centre}, author={Pfeifer, Florian and Knorr, Lukas and Schlosser, Florian and Marten, Thorsten and Tröster, Thomas}, year={2023}, pages={1–20} }"}},{"publication":" Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology","citation":{"short":"H. Hanses, E.F. Akbulut Irmak, I. Horwath, T. Tröster, in: I. Horwath, S. Schweizer (Eds.),  Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology, 1st ed., transcript Verlag, Bielefeld, n.d.","chicago":"Hanses, Hendrik, Emine Fulya Akbulut Irmak, Ilona Horwath, and Thomas Tröster. “Challenges of Lightweight Design, Vehicles, and Rescuers.” In <i> Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology</i>, edited by Ilona Horwath and Swetlana Schweizer, 1st ed. Bielefeld: transcript Verlag, n.d.","ieee":"H. Hanses, E. F. Akbulut Irmak, I. Horwath, and T. Tröster, “Challenges of lightweight design, vehicles, and rescuers,” in <i> Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology</i>, 1st ed., I. Horwath and S. Schweizer, Eds. Bielefeld: transcript Verlag.","apa":"Hanses, H., Akbulut Irmak, E. F., Horwath, I., &#38; Tröster, T. (n.d.). Challenges of lightweight design, vehicles, and rescuers. In I. Horwath &#38; S. Schweizer (Eds.), <i> Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology</i> (1st ed.). transcript Verlag.","bibtex":"@inbook{Hanses_Akbulut Irmak_Horwath_Tröster, place={Bielefeld}, edition={1}, title={Challenges of lightweight design, vehicles, and rescuers}, booktitle={ Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology}, publisher={transcript Verlag}, author={Hanses, Hendrik and Akbulut Irmak, Emine Fulya and Horwath, Ilona and Tröster, Thomas}, editor={Horwath, Ilona and Schweizer, Swetlana} }","ama":"Hanses H, Akbulut Irmak EF, Horwath I, Tröster T. Challenges of lightweight design, vehicles, and rescuers. In: Horwath I, Schweizer S, eds. <i> Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology</i>. 1st ed. transcript Verlag.","mla":"Hanses, Hendrik, et al. “Challenges of Lightweight Design, Vehicles, and Rescuers.” <i> Climate Protection, Resource Efficiency, and Sustainable Engineering. Transdisciplinary Approaches to Design and Manufacturing Technology</i>, edited by Ilona Horwath and Swetlana Schweizer, 1st ed., transcript Verlag."},"quality_controlled":"1","place":"Bielefeld","date_created":"2022-11-30T12:32:37Z","type":"book_chapter","department":[{"_id":"603"},{"_id":"9"},{"_id":"321"},{"_id":"149"}],"title":"Challenges of lightweight design, vehicles, and rescuers","status":"public","year":"2023","publication_identifier":{"isbn":["978-3-8376-6377-8"]},"author":[{"last_name":"Hanses","first_name":"Hendrik","full_name":"Hanses, Hendrik","id":"64527"},{"full_name":"Akbulut Irmak, Emine Fulya","first_name":"Emine Fulya","orcid":"0000-0002-1338-810X","last_name":"Akbulut Irmak","id":"72008"},{"first_name":"Ilona","last_name":"Horwath","full_name":"Horwath, Ilona","id":"68836"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"}],"date_updated":"2025-06-06T08:16:59Z","publication_status":"unpublished","language":[{"iso":"eng"}],"_id":"34165","publisher":"transcript Verlag","edition":"1","user_id":"15952","editor":[{"first_name":"Ilona","last_name":"Horwath","full_name":"Horwath, Ilona"},{"first_name":"Swetlana","last_name":"Schweizer","full_name":"Schweizer, Swetlana"}]},{"date_updated":"2026-02-17T10:36:25Z","publication_status":"published","conference":{"name":"18th Conference on Sustainable Development of Energy, Water and Environmental Systems","start_date":"2023-09-24","location":"Dubrovnik, Croatia","end_date":"2023-09-29"},"author":[{"id":"44763","full_name":"Ostermann, Moritz","last_name":"Ostermann","first_name":"Moritz","orcid":"https://orcid.org/0000-0003-1146-0443"},{"first_name":"Eric","last_name":"Dierkes","full_name":"Dierkes, Eric"},{"full_name":"Marten, Thorsten","last_name":"Marten","orcid":"0009-0001-6433-7839","first_name":"Thorsten","id":"338"},{"id":"553","first_name":"Thomas","last_name":"Tröster","full_name":"Tröster, Thomas"}],"title":"Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts","status":"public","year":"2023","user_id":"338","_id":"60905","language":[{"iso":"eng"}],"citation":{"ieee":"M. Ostermann, E. Dierkes, T. Marten, and T. Tröster, “Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts,” presented at the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia, 2023.","apa":"Ostermann, M., Dierkes, E., Marten, T., &#38; Tröster, T. (2023). Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts. <i>Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023</i>. 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia.","mla":"Ostermann, Moritz, et al. “Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts.” <i>Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023</i>, 2023.","bibtex":"@inproceedings{Ostermann_Dierkes_Marten_Tröster_2023, title={Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts}, booktitle={Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023}, author={Ostermann, Moritz and Dierkes, Eric and Marten, Thorsten and Tröster, Thomas}, year={2023} }","chicago":"Ostermann, Moritz, Eric Dierkes, Thorsten Marten, and Thomas Tröster. “Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts.” In <i>Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023</i>, 2023.","short":"M. Ostermann, E. Dierkes, T. Marten, T. Tröster, in: Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023, 2023.","ama":"Ostermann M, Dierkes E, Marten T, Tröster T. Life Cycle Assessment of Lightweight Structures in Vehicles for New Mobility Concepts. In: <i>Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023</i>. ; 2023."},"publication":"Proceedings of the 18th Conference on Sustainable Development of Energy, Water and Environmental Systems, Dubrovnik, Croatia 2023","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"conference_abstract","date_created":"2025-08-07T06:56:09Z"},{"oa":"1","citation":{"ama":"Bödger C, Gnaase S, Lehnert D, Tröster T. Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel 718. In: <i>Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference</i>. ; 2023.","bibtex":"@inproceedings{Bödger_Gnaase_Lehnert_Tröster_2023, title={Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel 718}, booktitle={Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference}, author={Bödger, Christian and Gnaase, Stefan and Lehnert, Dennis and Tröster, Thomas}, year={2023} }","mla":"Bödger, Christian, et al. “Investigation of the Influence of Process Parameters on Productivity in the LPBF Process for the Material Inconel 718.” <i>Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference</i>, 2023.","short":"C. Bödger, S. Gnaase, D. Lehnert, T. Tröster, in: Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference, 2023.","chicago":"Bödger, Christian, Stefan Gnaase, Dennis Lehnert, and Thomas Tröster. “Investigation of the Influence of Process Parameters on Productivity in the LPBF Process for the Material Inconel 718.” In <i>Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference</i>, 2023.","apa":"Bödger, C., Gnaase, S., Lehnert, D., &#38; Tröster, T. (2023). Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel 718. <i>Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference</i>. Solid Freeform Fabrication, Austin.","ieee":"C. Bödger, S. Gnaase, D. Lehnert, and T. Tröster, “Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel 718,” presented at the Solid Freeform Fabrication, Austin, 2023."},"file_date_updated":"2024-01-23T08:25:26Z","_id":"50742","user_id":"90491","ddc":["670"],"conference":{"end_date":"2023-08-16","start_date":"2023-08-14","name":"Solid Freeform Fabrication","location":"Austin"},"status":"public","has_accepted_license":"1","date_created":"2024-01-23T08:32:28Z","file":[{"date_created":"2024-01-23T08:25:26Z","creator":"cboedger","content_type":"application/pdf","success":1,"file_id":"50743","access_level":"closed","file_size":999107,"file_name":"Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel718 - Bödger.pdf","date_updated":"2024-01-23T08:25:26Z","relation":"main_file"}],"department":[{"_id":"149"},{"_id":"219"},{"_id":"321"},{"_id":"9"}],"type":"conference","publication":"Proceedings of the 34th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference","abstract":[{"text":"The nickel-based alloy Inconel 718, which is used in aerospace technology, poses a great\r\nchallenge to conventional machining due to its high strain hardening and toughness. Here, the laser\r\npowder bed fusion process (LPBF) offers an alternative with potential savings if sufficiently high\r\nproductivity can be achieved. Based on the parameter study carried out, starting from the SLM\r\nSolutions standard parameters for the manufacturing of components, exposure parameters could be\r\ndeveloped to realize manufacturing with 120 μm and 150 μm layer thickness, with almost the same\r\ngeometric accuracy. For this purpose, the process parameters of laser power, focus diameter, hatch\r\ndistance and scan speed were varied. The negative defocusing of the laser showed a positive effect\r\non the density of the parts, realizing densities ≥ 99.94 %, with high dimensional stability and good\r\nmechanical properties. Considering the reduced manufacturing time of up to 61 %, a significant\r\nincrease in productivity was achieved.","lang":"eng"}],"language":[{"iso":"eng"}],"main_file_link":[{"url":"https://utw10945.utweb.utexas.edu/sites/default/files/2023/091%20InvestigationoftheInfluenceofProcessParametersonProductivityintheLPBFProcessfortheMat.pdf","open_access":"1"}],"author":[{"id":"93904","full_name":"Bödger, Christian","first_name":"Christian","last_name":"Bödger"},{"full_name":"Gnaase, Stefan","last_name":"Gnaase","first_name":"Stefan","id":"25730"},{"id":"90491","full_name":"Lehnert, Dennis","last_name":"Lehnert","first_name":"Dennis"},{"full_name":"Tröster, Thomas","last_name":"Tröster","first_name":"Thomas","id":"553"}],"title":"Investigation of the influence of process parameters on productivity in the LPBF process for the material Inconel 718","year":"2023","publication_status":"published","date_updated":"2025-03-18T12:44:43Z"},{"quality_controlled":"1","file_date_updated":"2024-11-22T15:55:07Z","citation":{"apa":"Gnaase, S., Niggemeyer, D., Lehnert, D., Bödger, C., &#38; Tröster, T. (2023). Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709. <i>Crystals</i>, <i>13</i>(2), Article 157. <a href=\"https://doi.org/10.3390/cryst13020157\">https://doi.org/10.3390/cryst13020157</a>","ieee":"S. Gnaase, D. Niggemeyer, D. Lehnert, C. Bödger, and T. Tröster, “Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709,” <i>Crystals</i>, vol. 13, no. 2, Art. no. 157, 2023, doi: <a href=\"https://doi.org/10.3390/cryst13020157\">10.3390/cryst13020157</a>.","short":"S. Gnaase, D. Niggemeyer, D. Lehnert, C. Bödger, T. Tröster, Crystals 13 (2023).","chicago":"Gnaase, Stefan, Dennis Niggemeyer, Dennis Lehnert, Christian Bödger, and Thomas Tröster. “Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709.” <i>Crystals</i> 13, no. 2 (2023). <a href=\"https://doi.org/10.3390/cryst13020157\">https://doi.org/10.3390/cryst13020157</a>.","mla":"Gnaase, Stefan, et al. “Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709.” <i>Crystals</i>, vol. 13, no. 2, 157, MDPI AG, 2023, doi:<a href=\"https://doi.org/10.3390/cryst13020157\">10.3390/cryst13020157</a>.","ama":"Gnaase S, Niggemeyer D, Lehnert D, Bödger C, Tröster T. Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709. <i>Crystals</i>. 2023;13(2). doi:<a href=\"https://doi.org/10.3390/cryst13020157\">10.3390/cryst13020157</a>","bibtex":"@article{Gnaase_Niggemeyer_Lehnert_Bödger_Tröster_2023, title={Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &#38;amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709}, volume={13}, DOI={<a href=\"https://doi.org/10.3390/cryst13020157\">10.3390/cryst13020157</a>}, number={2157}, journal={Crystals}, publisher={MDPI AG}, author={Gnaase, Stefan and Niggemeyer, Dennis and Lehnert, Dennis and Bödger, Christian and Tröster, Thomas}, year={2023} }"},"status":"public","user_id":"90491","ddc":["670"],"volume":13,"_id":"37200","publisher":"MDPI AG","abstract":[{"lang":"eng","text":"<jats:p>(1) This work answers the question of whether and to what extent there is a significant difference in mechanical properties when different additive manufacturing processes are applied to the material 1.2709. The Laser-Powder-Bed-Fusion (L-PBF) and Laser-Metal-Deposition (LMD) processes are considered, as they differ fundamentally in the way a part is manufactured. (2) Known process parameters for low-porosity parts were used to fabricate tensile strength specimens. Half of the specimens were heat-treated, and all specimens were tested for mechanical properties in a quasi-static tensile test. In addition, the material hardness was determined. (3) It was found that, firstly, heat treatment resulted in a sharp increase in mechanical properties such as hardness, elastic modulus, yield strength and ultimate strength. In addition to the increase in these properties, the elongation at break also decreases significantly after heat treatment. The choice of process, on the other hand, does not give either process a clear advantage in terms of mechanical properties but shows that it is necessary to consider the essential mechanical properties for a desired application.</jats:p>"}],"publication":"Crystals","issue":"2","keyword":["Inorganic Chemistry","Condensed Matter Physics","General Materials Science","General Chemical Engineering"],"type":"journal_article","department":[{"_id":"149"},{"_id":"9"},{"_id":"321"}],"file":[{"creator":"cboedger","date_created":"2024-11-22T15:55:07Z","relation":"main_file","date_updated":"2024-11-22T15:55:07Z","file_name":"crystals-13-00157.pdf","access_level":"closed","file_size":5838834,"file_id":"57334","content_type":"application/pdf","success":1}],"date_created":"2023-01-18T05:44:59Z","publication_status":"published","date_updated":"2025-03-18T12:45:57Z","article_type":"original","intvolume":"        13","title":"Comparative Study of the Influence of Heat Treatment and Additive Manufacturing Process (LMD &amp; L-PBF) on the Mechanical Properties of Specimens Manufactured from 1.2709","year":"2023","author":[{"first_name":"Stefan","last_name":"Gnaase","full_name":"Gnaase, Stefan","id":"25730"},{"id":"77214","full_name":"Niggemeyer, Dennis","first_name":"Dennis","last_name":"Niggemeyer"},{"id":"90491","full_name":"Lehnert, Dennis","first_name":"Dennis","last_name":"Lehnert"},{"id":"93904","first_name":"Christian","last_name":"Bödger","full_name":"Bödger, Christian"},{"last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas","id":"553"}],"publication_identifier":{"issn":["2073-4352"]},"doi":"10.3390/cryst13020157","article_number":"157","language":[{"iso":"eng"}]},{"type":"newspaper_article","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"date_created":"2022-08-18T08:13:33Z","publication":"CU reports","citation":{"short":"C. Linnig, T. Tröster, CU Reports (2022).","chicago":"Linnig, Caterina, and Thomas Tröster. “Sauber Recyceln- Innovative Verfahrenskombination Mit Ultraschall Ermöglicht Sicheren Umgang Mit Recycelten Carbonfasern.” <i>CU Reports</i>, 2022.","ieee":"C. Linnig and T. Tröster, “Sauber recyceln- Innovative Verfahrenskombination mit Ultraschall ermöglicht sicheren Umgang mit recycelten Carbonfasern,” <i>CU reports</i>, 2022.","apa":"Linnig, C., &#38; Tröster, T. (2022). Sauber recyceln- Innovative Verfahrenskombination mit Ultraschall ermöglicht sicheren Umgang mit recycelten Carbonfasern. <i>CU Reports</i>.","bibtex":"@article{Linnig_Tröster_2022, title={Sauber recyceln- Innovative Verfahrenskombination mit Ultraschall ermöglicht sicheren Umgang mit recycelten Carbonfasern}, journal={CU reports}, author={Linnig, Caterina and Tröster, Thomas}, year={2022} }","ama":"Linnig C, Tröster T. Sauber recyceln- Innovative Verfahrenskombination mit Ultraschall ermöglicht sicheren Umgang mit recycelten Carbonfasern. <i>CU reports</i>. 2022.","mla":"Linnig, Caterina, and Thomas Tröster. “Sauber Recyceln- Innovative Verfahrenskombination Mit Ultraschall Ermöglicht Sicheren Umgang Mit Recycelten Carbonfasern.” <i>CU Reports</i>, 2022."},"publication_date":"2022-06-01","user_id":"27890","language":[{"iso":"eng"}],"_id":"33001","date_updated":"2022-08-18T08:16:23Z","publication_status":"published","status":"public","title":"Sauber recyceln- Innovative Verfahrenskombination mit Ultraschall ermöglicht sicheren Umgang mit recycelten Carbonfasern","year":"2022","publication_identifier":{"unknown":["2699-4534"]},"author":[{"id":"27890","last_name":"Linnig","first_name":"Caterina","full_name":"Linnig, Caterina"},{"id":"553","last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas"}]},{"language":[{"iso":"eng"}],"_id":"37258","user_id":"72722","conference":{"name":"5th International Conference Hybrid 2022 Material & Structures"},"author":[{"full_name":"Haller, Sebastian","first_name":"Sebastian","last_name":"Haller"},{"id":"72722","full_name":"Tinkloh, Steffen Rainer","last_name":"Tinkloh","first_name":"Steffen Rainer"},{"id":"553","full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster"},{"last_name":"Brandt","first_name":"Robert","full_name":"Brandt, Robert"}],"year":"2022","status":"public","title":"The environmental impact on the strain rate dependent energy absorption capability of a hybrid crash absorber element","date_updated":"2023-01-18T09:08:37Z","date_created":"2023-01-18T09:06:44Z","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"conference_abstract","citation":{"short":"S. Haller, S.R. Tinkloh, T. Tröster, R. Brandt, in: 5th International Conference Hybrid 2022 Material &#38; Structures, 2022.","chicago":"Haller, Sebastian, Steffen Rainer Tinkloh, Thomas Tröster, and Robert Brandt. “The Environmental Impact on the Strain Rate Dependent Energy Absorption Capability of a Hybrid Crash Absorber Element.” In <i>5th International Conference Hybrid 2022 Material &#38; Structures</i>, 2022.","apa":"Haller, S., Tinkloh, S. R., Tröster, T., &#38; Brandt, R. (2022). The environmental impact on the strain rate dependent energy absorption capability of a hybrid crash absorber element. <i>5th International Conference Hybrid 2022 Material &#38; Structures</i>. 5th International Conference Hybrid 2022 Material &#38; Structures.","ieee":"S. Haller, S. R. Tinkloh, T. Tröster, and R. Brandt, “The environmental impact on the strain rate dependent energy absorption capability of a hybrid crash absorber element,” presented at the 5th International Conference Hybrid 2022 Material &#38; Structures, 2022.","ama":"Haller S, Tinkloh SR, Tröster T, Brandt R. The environmental impact on the strain rate dependent energy absorption capability of a hybrid crash absorber element. In: <i>5th International Conference Hybrid 2022 Material &#38; Structures</i>. ; 2022.","bibtex":"@inproceedings{Haller_Tinkloh_Tröster_Brandt_2022, title={The environmental impact on the strain rate dependent energy absorption capability of a hybrid crash absorber element}, booktitle={5th International Conference Hybrid 2022 Material &#38; Structures}, author={Haller, Sebastian and Tinkloh, Steffen Rainer and Tröster, Thomas and Brandt, Robert}, year={2022} }","mla":"Haller, Sebastian, et al. “The Environmental Impact on the Strain Rate Dependent Energy Absorption Capability of a Hybrid Crash Absorber Element.” <i>5th International Conference Hybrid 2022 Material &#38; Structures</i>, 2022."},"publication":"5th International Conference Hybrid 2022 Material & Structures"},{"author":[{"id":"22717","full_name":"Pfeifer, Florian","last_name":"Pfeifer","first_name":"Florian"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"},{"id":"338","first_name":"Thorsten","last_name":"Marten","full_name":"Marten, Thorsten"},{"full_name":"Dietrich, André","first_name":"André","last_name":"Dietrich"},{"full_name":"Nacke, Bernard","last_name":"Nacke","first_name":"Bernard"},{"id":"194","first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido"}],"conference":{"end_date":"2022-06-23","name":"6th International Conference on Steels in Cars and Trucks","start_date":"2022-06-19","location":"Mailand"},"title":"Investigation on hot sheet metal forming by means of a longitudinal flux inductor","year":"2022","status":"public","date_updated":"2023-01-18T14:43:10Z","_id":"32819","language":[{"iso":"eng"}],"user_id":"22717","citation":{"chicago":"Pfeifer, Florian, Thomas Tröster, Thorsten Marten, André Dietrich, Bernard Nacke, and Guido Grundmeier. “Investigation on Hot Sheet Metal Forming by Means of a Longitudinal Flux Inductor.” In <i>Proceedings of the 6th International Conference on Steels in Cars and Trucks</i>, 2022.","short":"F. Pfeifer, T. Tröster, T. Marten, A. Dietrich, B. Nacke, G. Grundmeier, in: Proceedings of the 6th International Conference on Steels in Cars and Trucks, 2022.","apa":"Pfeifer, F., Tröster, T., Marten, T., Dietrich, A., Nacke, B., &#38; Grundmeier, G. (2022). Investigation on hot sheet metal forming by means of a longitudinal flux inductor. <i>Proceedings of the 6th International Conference on Steels in Cars and Trucks</i>. 6th International Conference on Steels in Cars and Trucks, Mailand.","ieee":"F. Pfeifer, T. Tröster, T. Marten, A. Dietrich, B. Nacke, and G. Grundmeier, “Investigation on hot sheet metal forming by means of a longitudinal flux inductor,” presented at the 6th International Conference on Steels in Cars and Trucks, Mailand, 2022.","ama":"Pfeifer F, Tröster T, Marten T, Dietrich A, Nacke B, Grundmeier G. Investigation on hot sheet metal forming by means of a longitudinal flux inductor. In: <i>Proceedings of the 6th International Conference on Steels in Cars and Trucks</i>. ; 2022.","bibtex":"@inproceedings{Pfeifer_Tröster_Marten_Dietrich_Nacke_Grundmeier_2022, title={Investigation on hot sheet metal forming by means of a longitudinal flux inductor}, booktitle={Proceedings of the 6th International Conference on Steels in Cars and Trucks}, author={Pfeifer, Florian and Tröster, Thomas and Marten, Thorsten and Dietrich, André and Nacke, Bernard and Grundmeier, Guido}, year={2022} }","mla":"Pfeifer, Florian, et al. “Investigation on Hot Sheet Metal Forming by Means of a Longitudinal Flux Inductor.” <i>Proceedings of the 6th International Conference on Steels in Cars and Trucks</i>, 2022."},"publication":"Proceedings of the 6th International Conference on Steels in Cars and Trucks","date_created":"2022-08-16T07:06:48Z","department":[{"_id":"149"},{"_id":"321"},{"_id":"9"}],"type":"conference"},{"citation":{"ieee":"D. Voswinkel <i>et al.</i>, “Co-bonding of carbon fibre-reinforced epoxy and galvanised steel with laser structured interface for automotive applications,” <i>Advanced Composite Materials</i>, pp. 1–16, 2022, doi: <a href=\"https://doi.org/10.1080/09243046.2022.2143746\">10.1080/09243046.2022.2143746</a>.","apa":"Voswinkel, D., Striewe, J. A., Grydin, O., Meinderink, D., Grundmeier, G., Schaper, M., &#38; Tröster, T. (2022). Co-bonding of carbon fibre-reinforced epoxy and galvanised steel with laser structured interface for automotive applications. <i>Advanced Composite Materials</i>, 1–16. <a href=\"https://doi.org/10.1080/09243046.2022.2143746\">https://doi.org/10.1080/09243046.2022.2143746</a>","chicago":"Voswinkel, Dietrich, Jan Andre Striewe, Olexandr Grydin, Dennis Meinderink, Guido Grundmeier, Mirko Schaper, and Thomas Tröster. “Co-Bonding of Carbon Fibre-Reinforced Epoxy and Galvanised Steel with Laser Structured Interface for Automotive Applications.” <i>Advanced Composite Materials</i>, 2022, 1–16. <a href=\"https://doi.org/10.1080/09243046.2022.2143746\">https://doi.org/10.1080/09243046.2022.2143746</a>.","short":"D. Voswinkel, J.A. Striewe, O. Grydin, D. Meinderink, G. Grundmeier, M. Schaper, T. Tröster, Advanced Composite Materials (2022) 1–16.","mla":"Voswinkel, Dietrich, et al. “Co-Bonding of Carbon Fibre-Reinforced Epoxy and Galvanised Steel with Laser Structured Interface for Automotive Applications.” <i>Advanced Composite Materials</i>, Informa UK Limited, 2022, pp. 1–16, doi:<a href=\"https://doi.org/10.1080/09243046.2022.2143746\">10.1080/09243046.2022.2143746</a>.","bibtex":"@article{Voswinkel_Striewe_Grydin_Meinderink_Grundmeier_Schaper_Tröster_2022, title={Co-bonding of carbon fibre-reinforced epoxy and galvanised steel with laser structured interface for automotive applications}, DOI={<a href=\"https://doi.org/10.1080/09243046.2022.2143746\">10.1080/09243046.2022.2143746</a>}, journal={Advanced Composite Materials}, publisher={Informa UK Limited}, author={Voswinkel, Dietrich and Striewe, Jan Andre and Grydin, Olexandr and Meinderink, Dennis and Grundmeier, Guido and Schaper, Mirko and Tröster, Thomas}, year={2022}, pages={1–16} }","ama":"Voswinkel D, Striewe JA, Grydin O, et al. Co-bonding of carbon fibre-reinforced epoxy and galvanised steel with laser structured interface for automotive applications. <i>Advanced Composite Materials</i>. Published online 2022:1-16. doi:<a href=\"https://doi.org/10.1080/09243046.2022.2143746\">10.1080/09243046.2022.2143746</a>"},"publication":"Advanced Composite Materials","quality_controlled":"1","date_created":"2022-11-17T08:05:26Z","department":[{"_id":"9"},{"_id":"149"},{"_id":"321"},{"_id":"158"}],"keyword":["Mechanical Engineering","Mechanics of Materials","Ceramics and Composites"],"type":"journal_article","publication_identifier":{"issn":["0924-3046","1568-5519"]},"author":[{"id":"52634","full_name":"Voswinkel, Dietrich","last_name":"Voswinkel","first_name":"Dietrich"},{"id":"29413","full_name":"Striewe, Jan Andre","first_name":"Jan Andre","last_name":"Striewe"},{"full_name":"Grydin, Olexandr","first_name":"Olexandr","last_name":"Grydin","id":"43822"},{"id":"32378","first_name":"Dennis","last_name":"Meinderink","orcid":"0000-0002-2755-6514","full_name":"Meinderink, Dennis"},{"last_name":"Grundmeier","first_name":"Guido","full_name":"Grundmeier, Guido","id":"194"},{"first_name":"Mirko","last_name":"Schaper","full_name":"Schaper, Mirko","id":"43720"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"}],"status":"public","title":"Co-bonding of carbon fibre-reinforced epoxy and galvanised steel with laser structured interface for automotive applications","year":"2022","date_updated":"2023-04-27T16:36:14Z","publication_status":"published","publisher":"Informa UK Limited","_id":"34097","language":[{"iso":"eng"}],"page":"1-16","doi":"10.1080/09243046.2022.2143746","user_id":"43720"},{"doi":"10.3390/jcs6050138","language":[{"iso":"eng"}],"article_number":"138","intvolume":"         6","date_updated":"2023-04-28T11:31:42Z","publication_status":"published","author":[{"last_name":"Wu","first_name":"Tao","full_name":"Wu, Tao"},{"first_name":"Roland","last_name":"Kruse","full_name":"Kruse, Roland"},{"full_name":"Tinkloh, Steffen Rainer","last_name":"Tinkloh","first_name":"Steffen Rainer","id":"72722"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"},{"full_name":"Zinn, Wolfgang","last_name":"Zinn","first_name":"Wolfgang"},{"full_name":"Lauhoff, Christian","first_name":"Christian","last_name":"Lauhoff"},{"full_name":"Niendorf, Thomas","last_name":"Niendorf","first_name":"Thomas"}],"publication_identifier":{"issn":["2504-477X"]},"year":"2022","title":"Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects","department":[{"_id":"149"},{"_id":"321"}],"keyword":["Engineering (miscellaneous)","Ceramics and Composites"],"type":"journal_article","date_created":"2022-05-30T07:04:34Z","abstract":[{"lang":"eng","text":"<jats:p>Carbon fiber reinforced plastics (CFRPs) gained high interest in industrial applications because of their excellent strength and low specific weight. The stacking sequence of the unidirectional plies forming a CFRP laminate, and their thicknesses, primarily determine the mechanical performance. However, during manufacturing, defects, e.g., pores and residual stresses, are induced, both affecting the mechanical properties. The objective of the present work is to accurately measure residual stresses in CFRPs as well as to investigate the effects of stacking sequence, overall laminate thickness, and the presence of pores on the residual stress state. Residual stresses were measured through the incremental hole-drilling method (HDM). Adequate procedures have been applied to evaluate the residual stresses for orthotropic materials, including calculating the calibration coefficients through finite element analysis (FEA) based on stacking sequence, laminate thickness and mechanical properties. Using optical microscopy (OM) and computed tomography (CT), profound insights into the cross-sectional and three-dimensional microstructure, e.g., location and shape of process-induced pores, were obtained. This microstructural information allowed for a comprehensive understanding of the experimentally determined strain and stress results, particularly at the transition zone between the individual plies. The effect of pores on residual stresses was investigated by considering pores to calculate the calibration coefficients at a depth of 0.06 mm to 0.12 mm in the model and utilizing these results for residual stress evaluation. A maximum difference of 46% in stress between defect-free and porous material sample conditions was observed at a hole depth of 0.65 mm. The significance of employing correctly calculated coefficients for the residual stress evaluation is highlighted by mechanical validation tests.</jats:p>"}],"issue":"5","publication":"Journal of Composites Science","volume":6,"user_id":"72722","_id":"31496","publisher":"MDPI AG","funded_apc":"1","status":"public","quality_controlled":"1","citation":{"ieee":"T. Wu <i>et al.</i>, “Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects,” <i>Journal of Composites Science</i>, vol. 6, no. 5, Art. no. 138, 2022, doi: <a href=\"https://doi.org/10.3390/jcs6050138\">10.3390/jcs6050138</a>.","apa":"Wu, T., Kruse, R., Tinkloh, S. R., Tröster, T., Zinn, W., Lauhoff, C., &#38; Niendorf, T. (2022). Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects. <i>Journal of Composites Science</i>, <i>6</i>(5), Article 138. <a href=\"https://doi.org/10.3390/jcs6050138\">https://doi.org/10.3390/jcs6050138</a>","chicago":"Wu, Tao, Roland Kruse, Steffen Rainer Tinkloh, Thomas Tröster, Wolfgang Zinn, Christian Lauhoff, and Thomas Niendorf. “Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects.” <i>Journal of Composites Science</i> 6, no. 5 (2022). <a href=\"https://doi.org/10.3390/jcs6050138\">https://doi.org/10.3390/jcs6050138</a>.","short":"T. Wu, R. Kruse, S.R. Tinkloh, T. Tröster, W. Zinn, C. Lauhoff, T. Niendorf, Journal of Composites Science 6 (2022).","mla":"Wu, Tao, et al. “Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects.” <i>Journal of Composites Science</i>, vol. 6, no. 5, 138, MDPI AG, 2022, doi:<a href=\"https://doi.org/10.3390/jcs6050138\">10.3390/jcs6050138</a>.","bibtex":"@article{Wu_Kruse_Tinkloh_Tröster_Zinn_Lauhoff_Niendorf_2022, title={Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects}, volume={6}, DOI={<a href=\"https://doi.org/10.3390/jcs6050138\">10.3390/jcs6050138</a>}, number={5138}, journal={Journal of Composites Science}, publisher={MDPI AG}, author={Wu, Tao and Kruse, Roland and Tinkloh, Steffen Rainer and Tröster, Thomas and Zinn, Wolfgang and Lauhoff, Christian and Niendorf, Thomas}, year={2022} }","ama":"Wu T, Kruse R, Tinkloh SR, et al. Experimental Analysis of Residual Stresses in CFRPs through Hole-Drilling Method: The Role of Stacking Sequence, Thickness, and Defects. <i>Journal of Composites Science</i>. 2022;6(5). doi:<a href=\"https://doi.org/10.3390/jcs6050138\">10.3390/jcs6050138</a>"}},{"type":"journal_article","keyword":["Civil and Structural Engineering","Ceramics and Composites"],"department":[{"_id":"149"},{"_id":"321"}],"date_created":"2022-08-15T11:03:54Z","quality_controlled":"1","publication":"Composite Structures","citation":{"chicago":"Wu, T., S. Degener, Steffen Rainer Tinkloh, A. Liehr, W. Zinn, J.P. Nobre, Thomas Tröster, and T. Niendorf. “Characterization of Residual Stresses in Fiber Metal Laminate Interfaces - A Combined Approach Applying Hole-Drilling Method and Energy-Dispersive X-Ray Diffraction.” <i>Composite Structures</i>, 2022. <a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">https://doi.org/10.1016/j.compstruct.2022.116071</a>.","short":"T. Wu, S. Degener, S.R. Tinkloh, A. Liehr, W. Zinn, J.P. Nobre, T. Tröster, T. Niendorf, Composite Structures (2022).","apa":"Wu, T., Degener, S., Tinkloh, S. R., Liehr, A., Zinn, W., Nobre, J. P., Tröster, T., &#38; Niendorf, T. (2022). Characterization of residual stresses in fiber metal laminate interfaces - A combined approach applying hole-drilling method and energy-dispersive X-ray diffraction. <i>Composite Structures</i>, Article 116071. <a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">https://doi.org/10.1016/j.compstruct.2022.116071</a>","ieee":"T. Wu <i>et al.</i>, “Characterization of residual stresses in fiber metal laminate interfaces - A combined approach applying hole-drilling method and energy-dispersive X-ray diffraction,” <i>Composite Structures</i>, Art. no. 116071, 2022, doi: <a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">10.1016/j.compstruct.2022.116071</a>.","ama":"Wu T, Degener S, Tinkloh SR, et al. Characterization of residual stresses in fiber metal laminate interfaces - A combined approach applying hole-drilling method and energy-dispersive X-ray diffraction. <i>Composite Structures</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">10.1016/j.compstruct.2022.116071</a>","bibtex":"@article{Wu_Degener_Tinkloh_Liehr_Zinn_Nobre_Tröster_Niendorf_2022, title={Characterization of residual stresses in fiber metal laminate interfaces - A combined approach applying hole-drilling method and energy-dispersive X-ray diffraction}, DOI={<a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">10.1016/j.compstruct.2022.116071</a>}, number={116071}, journal={Composite Structures}, publisher={Elsevier BV}, author={Wu, T. and Degener, S. and Tinkloh, Steffen Rainer and Liehr, A. and Zinn, W. and Nobre, J.P. and Tröster, Thomas and Niendorf, T.}, year={2022} }","mla":"Wu, T., et al. “Characterization of Residual Stresses in Fiber Metal Laminate Interfaces - A Combined Approach Applying Hole-Drilling Method and Energy-Dispersive X-Ray Diffraction.” <i>Composite Structures</i>, 116071, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.compstruct.2022.116071\">10.1016/j.compstruct.2022.116071</a>."},"doi":"10.1016/j.compstruct.2022.116071","user_id":"72722","article_number":"116071","language":[{"iso":"eng"}],"_id":"32814","publisher":"Elsevier BV","date_updated":"2023-04-28T11:31:56Z","publication_status":"published","status":"public","title":"Characterization of residual stresses in fiber metal laminate interfaces - A combined approach applying hole-drilling method and energy-dispersive X-ray diffraction","year":"2022","author":[{"last_name":"Wu","first_name":"T.","full_name":"Wu, T."},{"first_name":"S.","last_name":"Degener","full_name":"Degener, S."},{"first_name":"Steffen Rainer","last_name":"Tinkloh","full_name":"Tinkloh, Steffen Rainer","id":"72722"},{"full_name":"Liehr, A.","first_name":"A.","last_name":"Liehr"},{"first_name":"W.","last_name":"Zinn","full_name":"Zinn, W."},{"last_name":"Nobre","first_name":"J.P.","full_name":"Nobre, J.P."},{"id":"553","full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster"},{"full_name":"Niendorf, T.","last_name":"Niendorf","first_name":"T."}],"publication_identifier":{"issn":["0263-8223"]}},{"keyword":["Industrial and Manufacturing Engineering","Mechanical Engineering"],"type":"journal_article","department":[{"_id":"321"},{"_id":"149"},{"_id":"630"},{"_id":"157"}],"date_created":"2022-02-22T12:52:09Z","abstract":[{"lang":"eng","text":"The components of a body in white consist of many individual thin-walled sheet metal parts, which usually are manufactured in deep-drawing processes. In general, the conditions in a deep-drawing process change due to changing tribology conditions, varying degrees of spring back, or scattering material properties in the sheet blanks, which affects the resulting pre-strain. Mechanical joining processes, especially clinching, are influenced by these process-related pre-strains. The final geometric shape of a clinched joint is affected to a significant level by the prior material deformation when joining with constant process parameters. That leads to a change in the stiffness and force transmission in the clinched joint due to the different geometric dimensions, such as interlock, neck thickness and bottom thickness, which directly affect the load bearing capacity. Here, the influence of the pre-straining in the deep drawing process on the force distribution in clinch points in an automotive assembly is investigated by finite-element models numerically. In further studies, the results are implemented in an optimization tool for designing clinched components. The methodology starts with a pre-straining of metal sheets. This step is followed by 2D rotationally symmetric forming simulations of the joining process. The resulting mesh of each forming simulation is rotated and 3D models are obtained. The clinched joint solid model with pre-strains is used further to determine the joint stiffnesses. With the simulation of the same test set-up with an equivalent point-connector model, the equivalent stiffness for each pre-strain combination is determined. Simulations are performed on a clinched component to assess the influence of pre-strain and sheet thinning on the clinched joint loadings by using the equivalent stiffnesses. The investigations clearly show that for the selected component, the loadings at the clinch points are dependent on the sheet thinning and the stiffnesses due to pre-strain. The magnitude of the influence varies depending on the quantity considered. For example, the shear force is more sensitive to the joint stiffness than to the sheet thinning.</jats:p>"}],"publication":"Production Engineering","doi":"10.1007/s11740-021-01103-w","main_file_link":[{"url":"https://link.springer.com/article/10.1007/s11740-021-01103-w","open_access":"1"}],"language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2023-04-28T11:57:22Z","year":"2022","title":"Numerical investigation of the clinched joint loadings considering the initial pre-strain in the joining area","author":[{"id":"38177","last_name":"Martin","first_name":"Sven","full_name":"Martin, Sven"},{"id":"34782","last_name":"Bielak","first_name":"Christian Roman","full_name":"Bielak, Christian Roman"},{"id":"7850","full_name":"Bobbert, Mathias","last_name":"Bobbert","first_name":"Mathias"},{"last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas","id":"553"},{"full_name":"Meschut, Gerson","first_name":"Gerson","last_name":"Meschut","orcid":"0000-0002-2763-1246","id":"32056"}],"publication_identifier":{"issn":["0944-6524","1863-7353"]},"oa":"1","quality_controlled":"1","project":[{"name":"TRR 285: TRR 285","_id":"130","grant_number":"418701707"},{"_id":"131","name":"TRR 285 - A: TRR 285 - Project Area A"},{"_id":"135","name":"TRR 285 – A01: TRR 285 - Subproject A01"},{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"_id":"140","name":"TRR 285 – B01: TRR 285 - Subproject B01"}],"citation":{"chicago":"Martin, Sven, Christian Roman Bielak, Mathias Bobbert, Thomas Tröster, and Gerson Meschut. “Numerical Investigation of the Clinched Joint Loadings Considering the Initial Pre-Strain in the Joining Area.” <i>Production Engineering</i>, 2022. <a href=\"https://doi.org/10.1007/s11740-021-01103-w\">https://doi.org/10.1007/s11740-021-01103-w</a>.","short":"S. Martin, C.R. Bielak, M. Bobbert, T. Tröster, G. Meschut, Production Engineering (2022).","ieee":"S. Martin, C. R. Bielak, M. Bobbert, T. Tröster, and G. Meschut, “Numerical investigation of the clinched joint loadings considering the initial pre-strain in the joining area,” <i>Production Engineering</i>, 2022, doi: <a href=\"https://doi.org/10.1007/s11740-021-01103-w\">10.1007/s11740-021-01103-w</a>.","apa":"Martin, S., Bielak, C. R., Bobbert, M., Tröster, T., &#38; Meschut, G. (2022). Numerical investigation of the clinched joint loadings considering the initial pre-strain in the joining area. <i>Production Engineering</i>. <a href=\"https://doi.org/10.1007/s11740-021-01103-w\">https://doi.org/10.1007/s11740-021-01103-w</a>","bibtex":"@article{Martin_Bielak_Bobbert_Tröster_Meschut_2022, title={Numerical investigation of the clinched joint loadings considering the initial pre-strain in the joining area}, DOI={<a href=\"https://doi.org/10.1007/s11740-021-01103-w\">10.1007/s11740-021-01103-w</a>}, journal={Production Engineering}, publisher={Springer Science and Business Media LLC}, author={Martin, Sven and Bielak, Christian Roman and Bobbert, Mathias and Tröster, Thomas and Meschut, Gerson}, year={2022} }","ama":"Martin S, Bielak CR, Bobbert M, Tröster T, Meschut G. Numerical investigation of the clinched joint loadings considering the initial pre-strain in the joining area. <i>Production Engineering</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1007/s11740-021-01103-w\">10.1007/s11740-021-01103-w</a>","mla":"Martin, Sven, et al. “Numerical Investigation of the Clinched Joint Loadings Considering the Initial Pre-Strain in the Joining Area.” <i>Production Engineering</i>, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s11740-021-01103-w\">10.1007/s11740-021-01103-w</a>."},"user_id":"38177","publisher":"Springer Science and Business Media LLC","_id":"29951","status":"public"},{"publication":"Key Engineering Materials","date_created":"2022-08-15T11:02:37Z","type":"journal_article","department":[{"_id":"321"},{"_id":"149"},{"_id":"630"}],"year":"2022","title":"Influence of the Surrounding Sheet Geometry on a Clinched Joint","author":[{"id":"38177","last_name":"Martin","first_name":"Sven","full_name":"Martin, Sven"},{"first_name":"Kristijan","last_name":"Kurtusic","full_name":"Kurtusic, Kristijan"},{"id":"553","full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster"}],"date_updated":"2023-04-28T11:58:23Z","intvolume":"       927","main_file_link":[{"open_access":"1","url":"https://www.scientific.net/KEM.926.1505"}],"language":[{"iso":"eng"}],"doi":"  https://doi.org/10.4028/p-09md1c","citation":{"bibtex":"@article{Martin_Kurtusic_Tröster_2022, title={Influence of the Surrounding Sheet Geometry on a Clinched Joint}, volume={927}, DOI={<a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">  https://doi.org/10.4028/p-09md1c</a>}, journal={Key Engineering Materials}, author={Martin, Sven and Kurtusic, Kristijan and Tröster, Thomas}, year={2022} }","ama":"Martin S, Kurtusic K, Tröster T. Influence of the Surrounding Sheet Geometry on a Clinched Joint. <i>Key Engineering Materials</i>. 2022;927. doi:<a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">  https://doi.org/10.4028/p-09md1c</a>","mla":"Martin, Sven, et al. “Influence of the Surrounding Sheet Geometry on a Clinched Joint.” <i>Key Engineering Materials</i>, vol. 927, 2022, doi:<a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">  https://doi.org/10.4028/p-09md1c</a>.","chicago":"Martin, Sven, Kristijan Kurtusic, and Thomas Tröster. “Influence of the Surrounding Sheet Geometry on a Clinched Joint.” <i>Key Engineering Materials</i> 927 (2022). <a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">https://doi.org/  https://doi.org/10.4028/p-09md1c</a>.","short":"S. Martin, K. Kurtusic, T. Tröster, Key Engineering Materials 927 (2022).","ieee":"S. Martin, K. Kurtusic, and T. Tröster, “Influence of the Surrounding Sheet Geometry on a Clinched Joint,” <i>Key Engineering Materials</i>, vol. 927, 2022, doi: <a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">  https://doi.org/10.4028/p-09md1c</a>.","apa":"Martin, S., Kurtusic, K., &#38; Tröster, T. (2022). Influence of the Surrounding Sheet Geometry on a Clinched Joint. <i>Key Engineering Materials</i>, <i>927</i>. <a href=\"https://doi.org/  https://doi.org/10.4028/p-09md1c\">https://doi.org/  https://doi.org/10.4028/p-09md1c</a>"},"quality_controlled":"1","project":[{"grant_number":"418701707","_id":"130","name":"TRR 285: TRR 285"},{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"_id":"140","name":"TRR 285 – B01: TRR 285 - Subproject B01"}],"oa":"1","status":"public","conference":{"location":"Braga","start_date":"27.04.2022","name":"25th International Conference in Material Forming","end_date":"29.04.2022"},"_id":"32813","user_id":"38177","volume":927},{"date_updated":"2023-05-03T07:44:40Z","publication_status":"published","intvolume":"       926","title":"In-Mold-Assembly of Hybrid Bending Structures by Compression Molding","year":"2022","publication_identifier":{"issn":["1662-9795"]},"author":[{"full_name":"Stallmeister, Tim","first_name":"Tim","last_name":"Stallmeister","id":"45538"},{"id":"553","last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas"}],"doi":"10.4028/p-5fxp53","language":[{"iso":"eng"}],"abstract":[{"lang":"eng","text":"<jats:p>The further development of in-mold-assembly (IMA) technologies for structural hybrid components is of great importance for increasing the economic efficiency and thus the application potential. This paper presents an innovative IMA process concept for the manufacturing of bending loaded hybrid components consisting of two outer metal belts and an inner core structure made of glass mat reinforced thermoplastic (GMT). In this process, the core structure, which is provided with stiffening ribs and functional elements, is formed and joined to two metal belts in one single step. For experimental validation of the concept, the development of a prototypic molding tool and the manufacturing of hybrid beams including process parameters are described. Three-point bending tests and optical measurement technologies are used to characterize the failure behavior and mechanical properties of the produced hybrid beams. It was found that the innovative IMA process enables the manufacturing of hybrid components with high energy absorption and low weight in one step. The mass-specific energy absorption is increased by 693 % compared to pure GMT beams.</jats:p>"}],"publication":"Key Engineering Materials","keyword":["Mechanical Engineering","Mechanics of Materials","General Materials Science"],"type":"journal_article","department":[{"_id":"9"},{"_id":"149"},{"_id":"321"}],"date_created":"2022-08-17T07:28:31Z","status":"public","user_id":"14931","volume":926,"page":"1457-1467","_id":"32869","publisher":"Trans Tech Publications, Ltd.","quality_controlled":"1","citation":{"chicago":"Stallmeister, Tim, and Thomas Tröster. “In-Mold-Assembly of Hybrid Bending Structures by Compression Molding.” <i>Key Engineering Materials</i> 926 (2022): 1457–67. <a href=\"https://doi.org/10.4028/p-5fxp53\">https://doi.org/10.4028/p-5fxp53</a>.","short":"T. Stallmeister, T. Tröster, Key Engineering Materials 926 (2022) 1457–1467.","apa":"Stallmeister, T., &#38; Tröster, T. (2022). In-Mold-Assembly of Hybrid Bending Structures by Compression Molding. <i>Key Engineering Materials</i>, <i>926</i>, 1457–1467. <a href=\"https://doi.org/10.4028/p-5fxp53\">https://doi.org/10.4028/p-5fxp53</a>","ieee":"T. Stallmeister and T. Tröster, “In-Mold-Assembly of Hybrid Bending Structures by Compression Molding,” <i>Key Engineering Materials</i>, vol. 926, pp. 1457–1467, 2022, doi: <a href=\"https://doi.org/10.4028/p-5fxp53\">10.4028/p-5fxp53</a>.","ama":"Stallmeister T, Tröster T. In-Mold-Assembly of Hybrid Bending Structures by Compression Molding. <i>Key Engineering Materials</i>. 2022;926:1457-1467. doi:<a href=\"https://doi.org/10.4028/p-5fxp53\">10.4028/p-5fxp53</a>","bibtex":"@article{Stallmeister_Tröster_2022, title={In-Mold-Assembly of Hybrid Bending Structures by Compression Molding}, volume={926}, DOI={<a href=\"https://doi.org/10.4028/p-5fxp53\">10.4028/p-5fxp53</a>}, journal={Key Engineering Materials}, publisher={Trans Tech Publications, Ltd.}, author={Stallmeister, Tim and Tröster, Thomas}, year={2022}, pages={1457–1467} }","mla":"Stallmeister, Tim, and Thomas Tröster. “In-Mold-Assembly of Hybrid Bending Structures by Compression Molding.” <i>Key Engineering Materials</i>, vol. 926, Trans Tech Publications, Ltd., 2022, pp. 1457–67, doi:<a href=\"https://doi.org/10.4028/p-5fxp53\">10.4028/p-5fxp53</a>."}},{"quality_controlled":"1","citation":{"apa":"Triebus, M., Ostermann, M., Tröster, T., &#38; Horwath, I. (2022). Advanced Automotive Components by Fiber-Metal-Laminates. <i>Materials in Car Body Engineering - Bad Nauheim</i>. Materials in Car Body Engineering 2022, Bad Nauheim.","ieee":"M. Triebus, M. Ostermann, T. Tröster, and I. Horwath, “Advanced Automotive Components by Fiber-Metal-Laminates,” presented at the Materials in Car Body Engineering 2022, Bad Nauheim, 2022.","short":"M. Triebus, M. Ostermann, T. Tröster, I. Horwath, in: Materials in Car Body Engineering - Bad Nauheim, 2022.","chicago":"Triebus, Marcel, Moritz Ostermann, Thomas Tröster, and Ilona Horwath. “Advanced Automotive Components by Fiber-Metal-Laminates.” In <i>Materials in Car Body Engineering - Bad Nauheim</i>, 2022.","mla":"Triebus, Marcel, et al. “Advanced Automotive Components by Fiber-Metal-Laminates.” <i>Materials in Car Body Engineering - Bad Nauheim</i>, 2022.","ama":"Triebus M, Ostermann M, Tröster T, Horwath I. Advanced Automotive Components by Fiber-Metal-Laminates. In: <i>Materials in Car Body Engineering - Bad Nauheim</i>. ; 2022.","bibtex":"@inproceedings{Triebus_Ostermann_Tröster_Horwath_2022, title={Advanced Automotive Components by Fiber-Metal-Laminates}, booktitle={Materials in Car Body Engineering - Bad Nauheim}, author={Triebus, Marcel and Ostermann, Moritz and Tröster, Thomas and Horwath, Ilona}, year={2022} }"},"publication":"Materials in Car Body Engineering - Bad Nauheim","department":[{"_id":"321"},{"_id":"9"},{"_id":"149"},{"_id":"603"}],"type":"conference_abstract","date_created":"2022-08-17T08:06:47Z","date_updated":"2023-05-03T08:27:04Z","conference":{"location":"Bad Nauheim","name":"Materials in Car Body Engineering 2022","start_date":"2022-07-05","end_date":"2022-07-06"},"author":[{"id":"66036","full_name":"Triebus, Marcel","first_name":"Marcel","last_name":"Triebus"},{"id":"44763","full_name":"Ostermann, Moritz","orcid":"https://orcid.org/0000-0003-1146-0443","first_name":"Moritz","last_name":"Ostermann"},{"id":"553","full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster"},{"id":"68836","full_name":"Horwath, Ilona","first_name":"Ilona","last_name":"Horwath"}],"title":"Advanced Automotive Components by Fiber-Metal-Laminates","status":"public","year":"2022","user_id":"68836","language":[{"iso":"eng"}],"_id":"32871"},{"status":"public","volume":285,"user_id":"48039","publisher":"Elsevier BV","_id":"30510","quality_controlled":"1","citation":{"chicago":"Delp, Alexander, Jonathan Freund, Shuang Wu, Ronja Scholz, Miriam Löbbecke, Jan Haubrich, Thomas Tröster, and Frank Walther. “Influence of Laser-Generated Surface Micro-Structuring on the Intrinsically Bonded Hybrid System CFRP-EN AW 6082-T6 on Its Corrosion Properties.” <i>Composite Structures</i> 285 (2022). <a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">https://doi.org/10.1016/j.compstruct.2022.115238</a>.","short":"A. Delp, J. Freund, S. Wu, R. Scholz, M. Löbbecke, J. Haubrich, T. Tröster, F. Walther, Composite Structures 285 (2022).","apa":"Delp, A., Freund, J., Wu, S., Scholz, R., Löbbecke, M., Haubrich, J., Tröster, T., &#38; Walther, F. (2022). Influence of laser-generated surface micro-structuring on the intrinsically bonded hybrid system CFRP-EN AW 6082-T6 on its corrosion properties. <i>Composite Structures</i>, <i>285</i>, Article 115238. <a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">https://doi.org/10.1016/j.compstruct.2022.115238</a>","ieee":"A. Delp <i>et al.</i>, “Influence of laser-generated surface micro-structuring on the intrinsically bonded hybrid system CFRP-EN AW 6082-T6 on its corrosion properties,” <i>Composite Structures</i>, vol. 285, Art. no. 115238, 2022, doi: <a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">10.1016/j.compstruct.2022.115238</a>.","ama":"Delp A, Freund J, Wu S, et al. Influence of laser-generated surface micro-structuring on the intrinsically bonded hybrid system CFRP-EN AW 6082-T6 on its corrosion properties. <i>Composite Structures</i>. 2022;285. doi:<a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">10.1016/j.compstruct.2022.115238</a>","bibtex":"@article{Delp_Freund_Wu_Scholz_Löbbecke_Haubrich_Tröster_Walther_2022, title={Influence of laser-generated surface micro-structuring on the intrinsically bonded hybrid system CFRP-EN AW 6082-T6 on its corrosion properties}, volume={285}, DOI={<a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">10.1016/j.compstruct.2022.115238</a>}, number={115238}, journal={Composite Structures}, publisher={Elsevier BV}, author={Delp, Alexander and Freund, Jonathan and Wu, Shuang and Scholz, Ronja and Löbbecke, Miriam and Haubrich, Jan and Tröster, Thomas and Walther, Frank}, year={2022} }","mla":"Delp, Alexander, et al. “Influence of Laser-Generated Surface Micro-Structuring on the Intrinsically Bonded Hybrid System CFRP-EN AW 6082-T6 on Its Corrosion Properties.” <i>Composite Structures</i>, vol. 285, 115238, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.compstruct.2022.115238\">10.1016/j.compstruct.2022.115238</a>."},"article_type":"original","intvolume":"       285","publication_status":"published","date_updated":"2025-01-30T12:36:29Z","publication_identifier":{"issn":["0263-8223"]},"author":[{"full_name":"Delp, Alexander","last_name":"Delp","first_name":"Alexander"},{"full_name":"Freund, Jonathan","first_name":"Jonathan","last_name":"Freund"},{"orcid":"0000-0001-8645-9952","first_name":"Shuang","last_name":"Wu","full_name":"Wu, Shuang","id":"48039"},{"full_name":"Scholz, Ronja","last_name":"Scholz","first_name":"Ronja"},{"full_name":"Löbbecke, Miriam","last_name":"Löbbecke","first_name":"Miriam"},{"full_name":"Haubrich, Jan","last_name":"Haubrich","first_name":"Jan"},{"first_name":"Thomas","last_name":"Tröster","full_name":"Tröster, Thomas","id":"553"},{"first_name":"Frank","last_name":"Walther","full_name":"Walther, Frank"}],"title":"Influence of laser-generated surface micro-structuring on the intrinsically bonded hybrid system CFRP-EN AW 6082-T6 on its corrosion properties","year":"2022","doi":"10.1016/j.compstruct.2022.115238","language":[{"iso":"eng"}],"article_number":"115238","abstract":[{"text":"The corrosion behavior of a hybrid material consisting of intrinsically bonded carbon fiber-reinforced epoxy resin with laser-structured EN AW 6082 metal was investigated. Particular attention was paid to the effects of the laser-structuring, surface topography and the contacting. Pristine and hybridized specimens were corroded in aqueous NaCl electrolyte (0.1 mol/l) using a potentiodynamic polarization technique and subsequently analyzed using computed tomography, scanning electron-, light- and laser scanning microscopy. The results show that the corrosive reaction arises mainly from the aluminum component. Surface pretreatment of the aluminum resulted in increasing corrosion rates, but showed no influence on the hybrids corrosion properties. Optical micrographs suggest that the epoxy resin acts as a sealant preventing galvanic corrosion between the aluminum and carbon fibers by hindering the diffusion of the electrolyte into the joints. While corrosion effects were observed locally at the aluminum surface, they were, contrary to expectations, not enhanced on the hybrid interfaces.","lang":"eng"}],"publication":"Composite Structures","department":[{"_id":"321"},{"_id":"149"},{"_id":"9"}],"keyword":["Civil and Structural Engineering","Ceramics and Composites"],"type":"journal_article","date_created":"2022-03-25T07:27:22Z"},{"date_updated":"2025-05-19T11:46:03Z","year":"2022","status":"public","title":" Heat transfer coefficient investigation for hot die quenching process of Ti-6Al-4V alloy","author":[{"id":"72351","full_name":"Kaiser, Maximilian Alexander","first_name":"Maximilian Alexander","orcid":"0009-0008-1333-3396","last_name":"Kaiser"},{"last_name":"Rockicki","first_name":"Pawel","full_name":"Rockicki, Pawel"},{"first_name":"Fabian","last_name":"Höschen","full_name":"Höschen, Fabian"},{"full_name":"Wesendahl, Jan-Niklas","first_name":"Jan-Niklas","last_name":"Wesendahl"},{"full_name":"Konrad, Stefan","first_name":"Stefan","last_name":"Konrad"},{"first_name":"Thomas","last_name":"Meyer","full_name":"Meyer, Thomas"},{"last_name":"Marten","first_name":"Thorsten","orcid":"0009-0001-6433-7839","full_name":"Marten, Thorsten","id":"338"},{"full_name":"Tröster, Thomas","last_name":"Tröster","first_name":"Thomas","id":"553"}],"conference":{"location":"Orlando","name":"Titanium USA 2022 Conference ","start_date":"2022-10-09","end_date":"2022-10-12"},"user_id":"72351","_id":"49433","language":[{"iso":"eng"}],"citation":{"ama":"Kaiser MA, Rockicki P, Höschen F, et al.  Heat transfer coefficient investigation for hot die quenching process of Ti-6Al-4V alloy. In: ; 2022.","bibtex":"@inproceedings{Kaiser_Rockicki_Höschen_Wesendahl_Konrad_Meyer_Marten_Tröster_2022, title={ Heat transfer coefficient investigation for hot die quenching process of Ti-6Al-4V alloy}, author={Kaiser, Maximilian Alexander and Rockicki, Pawel and Höschen, Fabian and Wesendahl, Jan-Niklas and Konrad, Stefan and Meyer, Thomas and Marten, Thorsten and Tröster, Thomas}, year={2022} }","mla":"Kaiser, Maximilian Alexander, et al. <i> Heat Transfer Coefficient Investigation for Hot Die Quenching Process of Ti-6Al-4V Alloy</i>. 2022.","chicago":"Kaiser, Maximilian Alexander, Pawel Rockicki, Fabian Höschen, Jan-Niklas Wesendahl, Stefan Konrad, Thomas Meyer, Thorsten Marten, and Thomas Tröster. “ Heat Transfer Coefficient Investigation for Hot Die Quenching Process of Ti-6Al-4V Alloy,” 2022.","short":"M.A. Kaiser, P. Rockicki, F. Höschen, J.-N. Wesendahl, S. Konrad, T. Meyer, T. 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Kaiser <i>et al.</i>, “ Heat transfer coefficient investigation for hot die quenching process of Ti-6Al-4V alloy,” presented at the Titanium USA 2022 Conference , Orlando, 2022."},"type":"conference_abstract","keyword":["Ti-6Al-4V","heat transfer coefficient"],"department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"date_created":"2023-12-04T10:17:16Z"},{"date_updated":"2025-06-06T07:53:26Z","status":"public","title":"Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes","year":"2022","conference":{"end_date":"2022-11-10","location":"Paphos, Zypern","start_date":"2022-11-06","name":"17th Conference on Sustainable Development of Energy, Water and Environment Systems (SDEWES)"},"author":[{"id":"22717","first_name":"Florian","last_name":"Pfeifer","full_name":"Pfeifer, Florian"},{"id":"90391","full_name":"Knorr, Lukas","last_name":"Knorr","first_name":"Lukas"},{"full_name":"Schlosser, Florian","first_name":"Florian","last_name":"Schlosser","id":"88614"},{"id":"338","full_name":"Marten, Thorsten","last_name":"Marten","first_name":"Thorsten","orcid":"0009-0001-6433-7839"},{"first_name":"Thomas","last_name":"Tröster","full_name":"Tröster, Thomas","id":"553"}],"user_id":"88614","_id":"36112","language":[{"iso":"eng"}],"citation":{"bibtex":"@inproceedings{Pfeifer_Knorr_Schlosser_Marten_Tröster_2022, title={Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes}, author={Pfeifer, Florian and Knorr, Lukas and Schlosser, Florian and Marten, Thorsten and Tröster, Thomas}, year={2022} }","ama":"Pfeifer F, Knorr L, Schlosser F, Marten T, Tröster T. Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes. In: ; 2022.","mla":"Pfeifer, Florian, et al. <i>Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes</i>. 2022.","short":"F. Pfeifer, L. Knorr, F. Schlosser, T. Marten, T. Tröster, in: 2022.","chicago":"Pfeifer, Florian, Lukas Knorr, Florian Schlosser, Thorsten Marten, and Thomas Tröster. “Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes,” 2022.","ieee":"F. Pfeifer, L. Knorr, F. Schlosser, T. Marten, and T. Tröster, “Ecological and Economical Feasibility of Inductive Heating for Sustainable Press Hardening Processes,” presented at the 17th Conference on Sustainable Development of Energy, Water and Environment Systems (SDEWES), Paphos, Zypern, 2022.","apa":"Pfeifer, F., Knorr, L., Schlosser, F., Marten, T., &#38; Tröster, T. 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