[{"user_id":"50215","doi":"10.1002/srin.201600397","article_number":"1600397","_id":"23904","language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2022-01-06T06:56:04Z","status":"public","year":"2017","title":"Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling","author":[{"id":"43822","full_name":"Grydin, Olexandr","last_name":"Grydin","first_name":"Olexandr"},{"last_name":"Andreiev","first_name":"Anatolii","full_name":"Andreiev, Anatolii","id":"50215"},{"full_name":"Briukhanov, Arkadii","first_name":"Arkadii","last_name":"Briukhanov"},{"full_name":"Briukhanova, Zoia","first_name":"Zoia","last_name":"Briukhanova"},{"id":"43720","first_name":"Mirko","last_name":"Schaper","full_name":"Schaper, Mirko"}],"publication_identifier":{"issn":["1611-3683"]},"type":"journal_article","department":[{"_id":"158"},{"_id":"321"}],"date_created":"2021-09-08T07:30:56Z","publication":"steel research international","citation":{"bibtex":"@article{Grydin_Andreiev_Briukhanov_Briukhanova_Schaper_2017, title={Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling}, DOI={<a href=\"https://doi.org/10.1002/srin.201600397\">10.1002/srin.201600397</a>}, number={1600397}, journal={steel research international}, author={Grydin, Olexandr and Andreiev, Anatolii and Briukhanov, Arkadii and Briukhanova, Zoia and Schaper, Mirko}, year={2017} }","ama":"Grydin O, Andreiev A, Briukhanov A, Briukhanova Z, Schaper M. Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling. <i>steel research international</i>. 2017. doi:<a href=\"https://doi.org/10.1002/srin.201600397\">10.1002/srin.201600397</a>","mla":"Grydin, Olexandr, et al. “Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling.” <i>Steel Research International</i>, 1600397, 2017, doi:<a href=\"https://doi.org/10.1002/srin.201600397\">10.1002/srin.201600397</a>.","short":"O. Grydin, A. Andreiev, A. Briukhanov, Z. Briukhanova, M. Schaper, Steel Research International (2017).","chicago":"Grydin, Olexandr, Anatolii Andreiev, Arkadii Briukhanov, Zoia Briukhanova, and Mirko Schaper. “Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling.” <i>Steel Research International</i>, 2017. <a href=\"https://doi.org/10.1002/srin.201600397\">https://doi.org/10.1002/srin.201600397</a>.","ieee":"O. Grydin, A. Andreiev, A. Briukhanov, Z. Briukhanova, and M. Schaper, “Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling,” <i>steel research international</i>, 2017.","apa":"Grydin, O., Andreiev, A., Briukhanov, A., Briukhanova, Z., &#38; Schaper, M. (2017). Evolution of Microstructure, Properties and Texture of a Two-Phase Low-Carbon Steel at Cold Asymmetric Rolling. <i>Steel Research International</i>. <a href=\"https://doi.org/10.1002/srin.201600397\">https://doi.org/10.1002/srin.201600397</a>"}},{"author":[{"first_name":"Benjamin","last_name":"Lossen","full_name":"Lossen, Benjamin"},{"full_name":"Andreiev, Anatolii","first_name":"Anatolii","last_name":"Andreiev","id":"50215"},{"first_name":"Werner","last_name":"Homberg","full_name":"Homberg, Werner"},{"last_name":"Schaper","first_name":"Mirko","full_name":"Schaper, Mirko","id":"43720"}],"publication_identifier":{"issn":["1877-7058"]},"status":"public","title":"Friction-Spinning – Possibility of Grain Structure Adjustment","year":"2017","publication_status":"published","date_updated":"2022-01-06T06:56:04Z","_id":"23909","language":[{"iso":"eng"}],"page":"1749-1754","user_id":"50215","doi":"10.1016/j.proeng.2017.10.933","citation":{"chicago":"Lossen, Benjamin, Anatolii Andreiev, Werner Homberg, and Mirko Schaper. “Friction-Spinning – Possibility of Grain Structure Adjustment.” <i>Procedia Engineering</i>, 2017, 1749–54. <a href=\"https://doi.org/10.1016/j.proeng.2017.10.933\">https://doi.org/10.1016/j.proeng.2017.10.933</a>.","short":"B. Lossen, A. Andreiev, W. Homberg, M. Schaper, Procedia Engineering (2017) 1749–1754.","ieee":"B. Lossen, A. Andreiev, W. Homberg, and M. Schaper, “Friction-Spinning – Possibility of Grain Structure Adjustment,” <i>Procedia Engineering</i>, pp. 1749–1754, 2017.","apa":"Lossen, B., Andreiev, A., Homberg, W., &#38; Schaper, M. (2017). Friction-Spinning – Possibility of Grain Structure Adjustment. <i>Procedia Engineering</i>, 1749–1754. <a href=\"https://doi.org/10.1016/j.proeng.2017.10.933\">https://doi.org/10.1016/j.proeng.2017.10.933</a>","bibtex":"@article{Lossen_Andreiev_Homberg_Schaper_2017, title={Friction-Spinning – Possibility of Grain Structure Adjustment}, DOI={<a href=\"https://doi.org/10.1016/j.proeng.2017.10.933\">10.1016/j.proeng.2017.10.933</a>}, journal={Procedia Engineering}, author={Lossen, Benjamin and Andreiev, Anatolii and Homberg, Werner and Schaper, Mirko}, year={2017}, pages={1749–1754} }","ama":"Lossen B, Andreiev A, Homberg W, Schaper M. Friction-Spinning – Possibility of Grain Structure Adjustment. <i>Procedia Engineering</i>. 2017:1749-1754. doi:<a href=\"https://doi.org/10.1016/j.proeng.2017.10.933\">10.1016/j.proeng.2017.10.933</a>","mla":"Lossen, Benjamin, et al. “Friction-Spinning – Possibility of Grain Structure Adjustment.” <i>Procedia Engineering</i>, 2017, pp. 1749–54, doi:<a href=\"https://doi.org/10.1016/j.proeng.2017.10.933\">10.1016/j.proeng.2017.10.933</a>."},"publication":"Procedia Engineering","date_created":"2021-09-08T07:31:59Z","department":[{"_id":"158"},{"_id":"321"},{"_id":"156"}],"type":"journal_article"},{"date_created":"2021-09-08T07:32:09Z","place":"Cham","department":[{"_id":"158"},{"_id":"321"}],"type":"book_chapter","citation":{"apa":"Andreiev, A., Grydin, O., &#38; Schaper, M. (2017). A Rapid Heating Method for Press Hardening Processing. In <i>Proceedings of the 3rd Pan American Materials Congress</i>. Cham. <a href=\"https://doi.org/10.1007/978-3-319-52132-9_72\">https://doi.org/10.1007/978-3-319-52132-9_72</a>","ieee":"A. Andreiev, O. Grydin, and M. Schaper, “A Rapid Heating Method for Press Hardening Processing,” in <i>Proceedings of the 3rd Pan American Materials Congress</i>, Cham, 2017.","chicago":"Andreiev, Anatolii, Olexandr Grydin, and Mirko Schaper. “A Rapid Heating Method for Press Hardening Processing.” In <i>Proceedings of the 3rd Pan American Materials Congress</i>. Cham, 2017. <a href=\"https://doi.org/10.1007/978-3-319-52132-9_72\">https://doi.org/10.1007/978-3-319-52132-9_72</a>.","short":"A. Andreiev, O. Grydin, M. Schaper, in: Proceedings of the 3rd Pan American Materials Congress, Cham, 2017.","mla":"Andreiev, Anatolii, et al. “A Rapid Heating Method for Press Hardening Processing.” <i>Proceedings of the 3rd Pan American Materials Congress</i>, 2017, doi:<a href=\"https://doi.org/10.1007/978-3-319-52132-9_72\">10.1007/978-3-319-52132-9_72</a>.","ama":"Andreiev A, Grydin O, Schaper M. A Rapid Heating Method for Press Hardening Processing. In: <i>Proceedings of the 3rd Pan American Materials Congress</i>. Cham; 2017. doi:<a href=\"https://doi.org/10.1007/978-3-319-52132-9_72\">10.1007/978-3-319-52132-9_72</a>","bibtex":"@inbook{Andreiev_Grydin_Schaper_2017, place={Cham}, title={A Rapid Heating Method for Press Hardening Processing}, DOI={<a href=\"https://doi.org/10.1007/978-3-319-52132-9_72\">10.1007/978-3-319-52132-9_72</a>}, booktitle={Proceedings of the 3rd Pan American Materials Congress}, author={Andreiev, Anatolii and Grydin, Olexandr and Schaper, Mirko}, year={2017} }"},"publication":"Proceedings of the 3rd Pan American Materials Congress","language":[{"iso":"eng"}],"_id":"23910","user_id":"50215","doi":"10.1007/978-3-319-52132-9_72","publication_identifier":{"issn":["2367-1181","2367-1696"]},"author":[{"full_name":"Andreiev, Anatolii","first_name":"Anatolii","last_name":"Andreiev","id":"50215"},{"id":"43822","full_name":"Grydin, Olexandr","first_name":"Olexandr","last_name":"Grydin"},{"first_name":"Mirko","last_name":"Schaper","full_name":"Schaper, Mirko","id":"43720"}],"status":"public","title":"A Rapid Heating Method for Press Hardening Processing","year":"2017","publication_status":"published","date_updated":"2022-01-06T06:56:04Z"},{"date_updated":"2022-01-06T06:55:23Z","author":[{"last_name":"Knoop","first_name":"F.","full_name":"Knoop, F."},{"id":"13956","full_name":"Lieneke, Tobias","last_name":"Lieneke","first_name":"Tobias"},{"id":"20530","last_name":"Schöppner","first_name":"Volker","full_name":"Schöppner, Volker"}],"status":"public","title":"Reproduzierbarkeit der Maßhaltigkeit im Fused Deposition Modeling","year":"2017","user_id":"70729","doi":"10.3139/9783446454606.004","language":[{"iso":"eng"}],"_id":"22040","page":"52-66","abstract":[{"text":"Fused Deposition Modeling (FDM) is used for prototypes, single-partproduction and small batch productions of thermoplastic components. This manufacturing technique has the huge benefit that no forming tool is needed. The knowledge about dimensional deviations which occur in the FDM process is necessary for calculating fits and for determining tolerances. A major challenge is the reproducibility of the dimensional accuracy of FDM parts and the reproducibility between different FDM machines. There are many influential factors on the dimensional accuracy in the FDM process for example geometric, material-specific or process-specific factors, which are considered in this paper. The influence of the part position on the build platform of a Stratasys Fortus 400mc is analyzed in terms of the achievable dimensional accuracy. For this purpose, the temperature distribution in the actively heated build chamber is investigated and possible correlations to the dimensional accuracy are identified. The reproducibility of one machine is examined by a multiple production of the test specimens. In addition, a comparison with three other FDM machines from Stratasys is made. Afterwards, the long-term reproducibility of the dimensional accuracy is verified to consider how environmental influences such as maintenance or modification of machine components affect the dimensional accuracy of the FDM process.","lang":"eng"}],"citation":{"bibtex":"@inproceedings{Knoop_Lieneke_Schöppner_2017, title={Reproduzierbarkeit der Maßhaltigkeit im Fused Deposition Modeling}, DOI={<a href=\"https://doi.org/10.3139/9783446454606.004\">10.3139/9783446454606.004</a>}, booktitle={Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing}, author={Knoop, F. and Lieneke, Tobias and Schöppner, Volker}, year={2017}, pages={52–66} }","chicago":"Knoop, F., Tobias Lieneke, and Volker Schöppner. “Reproduzierbarkeit Der Maßhaltigkeit Im Fused Deposition Modeling.” In <i>Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing</i>, 52–66, 2017. <a href=\"https://doi.org/10.3139/9783446454606.004\">https://doi.org/10.3139/9783446454606.004</a>.","ama":"Knoop F, Lieneke T, Schöppner V. Reproduzierbarkeit der Maßhaltigkeit im Fused Deposition Modeling. In: <i>Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing</i>. ; 2017:52-66. doi:<a href=\"https://doi.org/10.3139/9783446454606.004\">10.3139/9783446454606.004</a>","short":"F. Knoop, T. Lieneke, V. Schöppner, in: Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing, 2017, pp. 52–66.","ieee":"F. Knoop, T. Lieneke, and V. Schöppner, “Reproduzierbarkeit der Maßhaltigkeit im Fused Deposition Modeling,” in <i>Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing</i>, 2017, pp. 52–66, doi: <a href=\"https://doi.org/10.3139/9783446454606.004\">10.3139/9783446454606.004</a>.","apa":"Knoop, F., Lieneke, T., &#38; Schöppner, V. (2017). Reproduzierbarkeit der Maßhaltigkeit im Fused Deposition Modeling. <i>Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing</i>, 52–66. <a href=\"https://doi.org/10.3139/9783446454606.004\">https://doi.org/10.3139/9783446454606.004</a>","mla":"Knoop, F., et al. “Reproduzierbarkeit Der Maßhaltigkeit Im Fused Deposition Modeling.” <i>Rapid Tech - International Trade Show &#38; Conference for Additive Manufacturing</i>, 2017, pp. 52–66, doi:<a href=\"https://doi.org/10.3139/9783446454606.004\">10.3139/9783446454606.004</a>."},"publication":"Rapid Tech - International Trade Show & Conference for Additive Manufacturing","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"146"},{"_id":"321"},{"_id":"9"}],"type":"conference","date_created":"2021-05-07T13:23:22Z"},{"volume":28,"doi":"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf","user_id":"70729","language":[{"iso":"eng"}],"_id":"22042","page":"470-484","intvolume":"        28","date_updated":"2022-01-06T06:55:23Z","author":[{"full_name":"Schumacher, C.","last_name":"Schumacher","first_name":"C."},{"first_name":"Volker","last_name":"Schöppner","full_name":"Schöppner, Volker","id":"20530"},{"first_name":"J.","last_name":"Guntermann","full_name":"Guntermann, J."}],"year":"2017","title":"Considering machine- and process-specific influences to create custom-built specimens for the Fused Deposition Modeling process","status":"public","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"321"},{"_id":"9"}],"type":"conference","date_created":"2021-05-07T13:23:24Z","abstract":[{"lang":"eng","text":"Compared to conventional polymer processing technologies the material selection in the Fused Deposition Modelling (FDM) process is restricted. To expand the range of materials the requirements for the material properties and the semi-finished products (filaments) must be clarified. For this, a machine- and process-independent rating of the processability is necessary. The established standards for the tensile strength test apply to specimens with nearly isotropic mechanical properties. The FDM process generates anisotropic parts. The properties are mainly influenced by the machine quality and the data processing. It is not possible to test a material for FDM independently of the machine and the data processing. In this paper, machine and process specific influences are investigated. Considering these influences, a custom-built specimen is created to test the tensile strength of the welding seams for polyamide 6. This procedure allows a machine- and process-independent rating of the processability in terms of tensile strength for different materials."}],"citation":{"mla":"Schumacher, C., et al. “Considering Machine- and Process-Specific Influences to Create Custom-Built Specimens for the Fused Deposition Modeling Process.” <i>28th Annual International Solid Freeform Fabrication Symposium</i>, vol. 28, 2017, pp. 470–84, doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>.","ama":"Schumacher C, Schöppner V, Guntermann J. Considering machine- and process-specific influences to create custom-built specimens for the Fused Deposition Modeling process. In: <i>28th Annual International Solid Freeform Fabrication Symposium</i>. Vol 28. ; 2017:470-484. doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>","bibtex":"@inproceedings{Schumacher_Schöppner_Guntermann_2017, title={Considering machine- and process-specific influences to create custom-built specimens for the Fused Deposition Modeling process}, volume={28}, DOI={<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>}, booktitle={28th Annual International Solid Freeform Fabrication Symposium}, author={Schumacher, C. and Schöppner, Volker and Guntermann, J.}, year={2017}, pages={470–484} }","apa":"Schumacher, C., Schöppner, V., &#38; Guntermann, J. (2017). Considering machine- and process-specific influences to create custom-built specimens for the Fused Deposition Modeling process. <i>28th Annual International Solid Freeform Fabrication Symposium</i>, <i>28</i>, 470–484. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>","ieee":"C. Schumacher, V. Schöppner, and J. Guntermann, “Considering machine- and process-specific influences to create custom-built specimens for the Fused Deposition Modeling process,” in <i>28th Annual International Solid Freeform Fabrication Symposium</i>, 2017, vol. 28, pp. 470–484, doi: <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>.","short":"C. Schumacher, V. Schöppner, J. Guntermann, in: 28th Annual International Solid Freeform Fabrication Symposium, 2017, pp. 470–484.","chicago":"Schumacher, C., Volker Schöppner, and J. Guntermann. “Considering Machine- and Process-Specific Influences to Create Custom-Built Specimens for the Fused Deposition Modeling Process.” In <i>28th Annual International Solid Freeform Fabrication Symposium</i>, 28:470–84, 2017. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/ConsideringMachineandProcessSpecificInfluenc.pdf</a>."},"publication":"28th Annual International Solid Freeform Fabrication Symposium"},{"abstract":[{"text":"A widely used Additive Manufacturing (AM) technology is Fused Deposition Modeling (FDM) to create prototypes and end-use parts with close-to-production thermoplastics. For their use as a final product, it is necessary that additively manufactured parts strictly adhere to the geometrical requirements of the technical drawing. In this paper, the holes and cylinders of the cylindrical elements are investigated in terms of achievable geometrical accuracy. For this purpose, different test specimens that allow a measurement of inner and outer diameters from 3 to 80 mm were designed. All specimens were measured with a coordinate measuring machine (CMM) to evaluate deviations from the nominal dimension and form deviations. The measuring method includes a scanning of the surface to record the course of dimensional deviations over the diameter. Thus, it was possible to visualize how deviations on cylindrical elements manufactured in FDM occur. In order to counteract these deviations and to improve the dimensional accuracy, different shrink factors and filling patterns were investigated. Consequently, an improvement of the dimensional accuracy was achieved.","lang":"eng"}],"publication":"28th Annual International Solid Freeform Fabrication Symposium","citation":{"bibtex":"@inproceedings{Knoop_Schöppner_2017, title={Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling}, volume={28}, DOI={<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>}, booktitle={28th Annual International Solid Freeform Fabrication Symposium}, author={Knoop, F. and Schöppner, Volker}, year={2017}, pages={2757–2776} }","ama":"Knoop F, Schöppner V. Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling. In: <i>28th Annual International Solid Freeform Fabrication Symposium</i>. Vol 28. ; 2017:2757-2776. doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>","mla":"Knoop, F., and Volker Schöppner. “Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling.” <i>28th Annual International Solid Freeform Fabrication Symposium</i>, vol. 28, 2017, pp. 2757–76, doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>.","short":"F. Knoop, V. Schöppner, in: 28th Annual International Solid Freeform Fabrication Symposium, 2017, pp. 2757–2776.","chicago":"Knoop, F., and Volker Schöppner. “Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling.” In <i>28th Annual International Solid Freeform Fabrication Symposium</i>, 28:2757–76, 2017. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>.","ieee":"F. Knoop and V. Schöppner, “Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling,” in <i>28th Annual International Solid Freeform Fabrication Symposium</i>, 2017, vol. 28, pp. 2757–2776, doi: <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>.","apa":"Knoop, F., &#38; Schöppner, V. (2017). Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling. <i>28th Annual International Solid Freeform Fabrication Symposium</i>, <i>28</i>, 2757–2776. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf</a>"},"type":"conference","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"321"},{"_id":"9"}],"date_created":"2021-05-07T13:23:28Z","date_updated":"2022-01-06T06:55:23Z","intvolume":"        28","status":"public","title":"Geometrical Accuracy of Holes and Cylinders Manufactured with Fused Deposition Modeling","year":"2017","author":[{"last_name":"Knoop","first_name":"F.","full_name":"Knoop, F."},{"id":"20530","first_name":"Volker","last_name":"Schöppner","full_name":"Schöppner, Volker"}],"user_id":"70729","doi":"http://utw10945.utweb.utexas.edu/sites/default/files/2017/Manuscripts/GeometricalAccuracyofHolesandCylindersManufa.pdf","volume":28,"page":"2757-2776","language":[{"iso":"eng"}],"_id":"22045"},{"user_id":"70729","volume":1,"page":"108-114","publisher":"Institut für Wissenschaftliche Veröffentlichungen","_id":"22049","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:55:23Z","intvolume":"         1","title":"Beurteilung der Schweißnahtfestigkeiten verschiedener Kunststoffe im FDM-Prozess","status":"public","year":"2017","author":[{"id":"20530","full_name":"Schöppner, Volker","first_name":"Volker","last_name":"Schöppner"},{"last_name":"Schumacher","first_name":"C.","full_name":"Schumacher, C."},{"full_name":"Guntermann, J.","last_name":"Guntermann","first_name":"J."}],"publication_identifier":{"isbn":["1618-8357"]},"type":"journal_article","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"321"},{"_id":"9"}],"date_created":"2021-05-07T13:23:33Z","abstract":[{"lang":"eng","text":"Um die Materialauswahl für den FDM-Prozess zu steigern, sollten die durch den FDM-Prozess an das Material gestellten Anforderungen bekannt sein. Dazu ist eine von der Maschine und der individuellen Datenaufbereitung möglichst unabhängige Bewertung der FDM-Verarbeitungseignung wünschenswert. In diesem Artikel werden eine Prüfmethode und ein dazu entwickelter Probekörper vorgestellt, mit dem die Schweißnahtfestigkeit verschiedener Polyamid 6 Typen im FDM-Prozess ermittelt und verglichen wird."}],"issue":"1","publication":"Jahresmagazin Kunststofftechnik","citation":{"chicago":"Schöppner, Volker, C. Schumacher, and J. Guntermann. “Beurteilung Der Schweißnahtfestigkeiten Verschiedener Kunststoffe Im FDM-Prozess.” <i>Jahresmagazin Kunststofftechnik</i> 1, no. 1 (2017): 108–14.","short":"V. Schöppner, C. Schumacher, J. Guntermann, Jahresmagazin Kunststofftechnik 1 (2017) 108–114.","apa":"Schöppner, V., Schumacher, C., &#38; Guntermann, J. (2017). Beurteilung der Schweißnahtfestigkeiten verschiedener Kunststoffe im FDM-Prozess. <i>Jahresmagazin Kunststofftechnik</i>, <i>1</i>(1), 108–114.","ieee":"V. Schöppner, C. Schumacher, and J. Guntermann, “Beurteilung der Schweißnahtfestigkeiten verschiedener Kunststoffe im FDM-Prozess,” <i>Jahresmagazin Kunststofftechnik</i>, vol. 1, no. 1, pp. 108–114, 2017.","ama":"Schöppner V, Schumacher C, Guntermann J. Beurteilung der Schweißnahtfestigkeiten verschiedener Kunststoffe im FDM-Prozess. <i>Jahresmagazin Kunststofftechnik</i>. 2017;1(1):108-114.","bibtex":"@article{Schöppner_Schumacher_Guntermann_2017, title={Beurteilung der Schweißnahtfestigkeiten verschiedener Kunststoffe im FDM-Prozess}, volume={1}, number={1}, journal={Jahresmagazin Kunststofftechnik}, publisher={Institut für Wissenschaftliche Veröffentlichungen}, author={Schöppner, Volker and Schumacher, C. and Guntermann, J.}, year={2017}, pages={108–114} }","mla":"Schöppner, Volker, et al. “Beurteilung Der Schweißnahtfestigkeiten Verschiedener Kunststoffe Im FDM-Prozess.” <i>Jahresmagazin Kunststofftechnik</i>, vol. 1, no. 1, Institut für Wissenschaftliche Veröffentlichungen, 2017, pp. 108–14."}},{"_id":"16791","language":[{"iso":"eng"}],"user_id":"338","title":"Investigation of geometrical discontinuities in blanks for hot sheet metal forming process under the influence of induction heating","status":"public","year":"2017","conference":{"start_date":"2017-06-18","name":"5th International Conference on Steels in Cars and Trucks","location":"Noordwijkerhout/Amsterdam","end_date":"2017-06-22"},"author":[{"last_name":"Dietrich","first_name":"André","full_name":"Dietrich, André"},{"full_name":"Nacke, Bernard","last_name":"Nacke","first_name":"Bernard"},{"first_name":"Florian","last_name":"Pfeifer","full_name":"Pfeifer, Florian","id":"22717"},{"id":"338","first_name":"Thorsten","last_name":"Marten","full_name":"Marten, Thorsten"},{"first_name":"Thomas","last_name":"Tröster","full_name":"Tröster, Thomas","id":"553"}],"date_updated":"2022-01-06T06:52:56Z","date_created":"2020-04-21T13:31:20Z","type":"conference","department":[{"_id":"149"},{"_id":"321"},{"_id":"9"}],"citation":{"bibtex":"@inproceedings{Dietrich_Nacke_Pfeifer_Marten_Tröster_2017, title={Investigation of geometrical discontinuities in blanks for hot sheet metal forming process under the influence of induction heating}, author={Dietrich, André and Nacke, Bernard and Pfeifer, Florian and Marten, Thorsten and Tröster, Thomas}, year={2017} }","ama":"Dietrich A, Nacke B, Pfeifer F, Marten T, Tröster T. Investigation of geometrical discontinuities in blanks for hot sheet metal forming process under the influence of induction heating. In: ; 2017.","mla":"Dietrich, André, et al. <i>Investigation of Geometrical Discontinuities in Blanks for Hot Sheet Metal Forming Process under the Influence of Induction Heating</i>. 2017.","chicago":"Dietrich, André, Bernard Nacke, Florian Pfeifer, Thorsten Marten, and Thomas Tröster. “Investigation of Geometrical Discontinuities in Blanks for Hot Sheet Metal Forming Process under the Influence of Induction Heating,” 2017.","short":"A. Dietrich, B. Nacke, F. Pfeifer, T. Marten, T. Tröster, in: 2017.","ieee":"A. Dietrich, B. Nacke, F. Pfeifer, T. Marten, and T. Tröster, “Investigation of geometrical discontinuities in blanks for hot sheet metal forming process under the influence of induction heating,” presented at the 5th International Conference on Steels in Cars and Trucks, Noordwijkerhout/Amsterdam, 2017.","apa":"Dietrich, A., Nacke, B., Pfeifer, F., Marten, T., &#38; Tröster, T. (2017). Investigation of geometrical discontinuities in blanks for hot sheet metal forming process under the influence of induction heating. Presented at the 5th International Conference on Steels in Cars and Trucks, Noordwijkerhout/Amsterdam."}},{"language":[{"iso":"eng"}],"_id":"15941","page":"33-44","user_id":"72008","doi":"10.1016/j.compstruct.2017.04.052","publication_identifier":{"issn":["0263-8223"]},"author":[{"full_name":"Reuter, Corin","first_name":"Corin","last_name":"Reuter"},{"last_name":"Sauerland","first_name":"Kim-Henning","full_name":"Sauerland, Kim-Henning"},{"id":"553","full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster"}],"title":"Experimental and numerical crushing analysis of circular CFRP tubes under axial impact loading","year":"2017","status":"public","publication_status":"published","date_updated":"2022-01-06T06:52:41Z","date_created":"2020-02-20T13:23:14Z","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"journal_article","citation":{"ieee":"C. Reuter, K.-H. Sauerland, and T. Tröster, “Experimental and numerical crushing analysis of circular CFRP tubes under axial impact loading,” <i>Composite Structures</i>, pp. 33–44, 2017.","apa":"Reuter, C., Sauerland, K.-H., &#38; Tröster, T. (2017). Experimental and numerical crushing analysis of circular CFRP tubes under axial impact loading. <i>Composite Structures</i>, 33–44. <a href=\"https://doi.org/10.1016/j.compstruct.2017.04.052\">https://doi.org/10.1016/j.compstruct.2017.04.052</a>","short":"C. Reuter, K.-H. Sauerland, T. Tröster, Composite Structures (2017) 33–44.","chicago":"Reuter, Corin, Kim-Henning Sauerland, and Thomas Tröster. “Experimental and Numerical Crushing Analysis of Circular CFRP Tubes under Axial Impact Loading.” <i>Composite Structures</i>, 2017, 33–44. <a href=\"https://doi.org/10.1016/j.compstruct.2017.04.052\">https://doi.org/10.1016/j.compstruct.2017.04.052</a>.","mla":"Reuter, Corin, et al. “Experimental and Numerical Crushing Analysis of Circular CFRP Tubes under Axial Impact Loading.” <i>Composite Structures</i>, 2017, pp. 33–44, doi:<a href=\"https://doi.org/10.1016/j.compstruct.2017.04.052\">10.1016/j.compstruct.2017.04.052</a>.","bibtex":"@article{Reuter_Sauerland_Tröster_2017, title={Experimental and numerical crushing analysis of circular CFRP tubes under axial impact loading}, DOI={<a href=\"https://doi.org/10.1016/j.compstruct.2017.04.052\">10.1016/j.compstruct.2017.04.052</a>}, journal={Composite Structures}, author={Reuter, Corin and Sauerland, Kim-Henning and Tröster, Thomas}, year={2017}, pages={33–44} }","ama":"Reuter C, Sauerland K-H, Tröster T. Experimental and numerical crushing analysis of circular CFRP tubes under axial impact loading. <i>Composite Structures</i>. 2017:33-44. doi:<a href=\"https://doi.org/10.1016/j.compstruct.2017.04.052\">10.1016/j.compstruct.2017.04.052</a>"},"publication":"Composite Structures","project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"}]},{"citation":{"mla":"Reuter, Corin, and Thomas Tröster. “Crashworthiness and Numerical Simulation of Hybrid Aluminium-CFRP Tubes under Axial Impact.” <i>Thin-Walled Structures</i>, vol. 117, 2017, pp. 1–9, doi:<a href=\"https://doi.org/10.1016/j.tws.2017.03.034\">10.1016/j.tws.2017.03.034</a>.","ama":"Reuter C, Tröster T. Crashworthiness and numerical simulation of hybrid aluminium-CFRP tubes under axial impact. <i>Thin-Walled Structures</i>. 2017;117:1-9. doi:<a href=\"https://doi.org/10.1016/j.tws.2017.03.034\">10.1016/j.tws.2017.03.034</a>","bibtex":"@article{Reuter_Tröster_2017, title={Crashworthiness and numerical simulation of hybrid aluminium-CFRP tubes under axial impact}, volume={117}, DOI={<a href=\"https://doi.org/10.1016/j.tws.2017.03.034\">10.1016/j.tws.2017.03.034</a>}, journal={Thin-Walled Structures}, author={Reuter, Corin and Tröster, Thomas}, year={2017}, pages={1–9} }","apa":"Reuter, C., &#38; Tröster, T. (2017). Crashworthiness and numerical simulation of hybrid aluminium-CFRP tubes under axial impact. <i>Thin-Walled Structures</i>, <i>117</i>, 1–9. <a href=\"https://doi.org/10.1016/j.tws.2017.03.034\">https://doi.org/10.1016/j.tws.2017.03.034</a>","ieee":"C. Reuter and T. Tröster, “Crashworthiness and numerical simulation of hybrid aluminium-CFRP tubes under axial impact,” <i>Thin-Walled Structures</i>, vol. 117, pp. 1–9, 2017.","chicago":"Reuter, Corin, and Thomas Tröster. “Crashworthiness and Numerical Simulation of Hybrid Aluminium-CFRP Tubes under Axial Impact.” <i>Thin-Walled Structures</i> 117 (2017): 1–9. <a href=\"https://doi.org/10.1016/j.tws.2017.03.034\">https://doi.org/10.1016/j.tws.2017.03.034</a>.","short":"C. Reuter, T. Tröster, Thin-Walled Structures 117 (2017) 1–9."},"publication":"Thin-Walled Structures","project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"}],"date_created":"2020-02-20T13:33:08Z","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"journal_article","publication_identifier":{"issn":["0263-8231"]},"author":[{"full_name":"Reuter, Corin","last_name":"Reuter","first_name":"Corin"},{"id":"553","full_name":"Tröster, Thomas","last_name":"Tröster","first_name":"Thomas"}],"status":"public","title":"Crashworthiness and numerical simulation of hybrid aluminium-CFRP tubes under axial impact","year":"2017","intvolume":"       117","publication_status":"published","date_updated":"2022-01-06T06:52:41Z","language":[{"iso":"eng"}],"_id":"15942","page":"1-9","volume":117,"user_id":"72008","doi":"10.1016/j.tws.2017.03.034"},{"publication":"Thin-Walled Structures","citation":{"chicago":"Striewe, Jan André, Corin Reuter, Kim-Henning Sauerland, and Thomas Tröster. “Manufacturing and Crashworthiness of Fabric-Reinforced Thermoplastic Composites.” <i>Thin-Walled Structures</i>, 2017, 501–8. <a href=\"https://doi.org/10.1016/j.tws.2017.11.011\">https://doi.org/10.1016/j.tws.2017.11.011</a>.","short":"J.A. Striewe, C. Reuter, K.-H. Sauerland, T. Tröster, Thin-Walled Structures (2017) 501–508.","ieee":"J. A. Striewe, C. Reuter, K.-H. Sauerland, and T. Tröster, “Manufacturing and crashworthiness of fabric-reinforced thermoplastic composites,” <i>Thin-Walled Structures</i>, pp. 501–508, 2017.","apa":"Striewe, J. A., Reuter, C., Sauerland, K.-H., &#38; Tröster, T. (2017). Manufacturing and crashworthiness of fabric-reinforced thermoplastic composites. <i>Thin-Walled Structures</i>, 501–508. <a href=\"https://doi.org/10.1016/j.tws.2017.11.011\">https://doi.org/10.1016/j.tws.2017.11.011</a>","bibtex":"@article{Striewe_Reuter_Sauerland_Tröster_2017, title={Manufacturing and crashworthiness of fabric-reinforced thermoplastic composites}, DOI={<a href=\"https://doi.org/10.1016/j.tws.2017.11.011\">10.1016/j.tws.2017.11.011</a>}, journal={Thin-Walled Structures}, author={Striewe, Jan André and Reuter, Corin and Sauerland, Kim-Henning and Tröster, Thomas}, year={2017}, pages={501–508} }","ama":"Striewe JA, Reuter C, Sauerland K-H, Tröster T. Manufacturing and crashworthiness of fabric-reinforced thermoplastic composites. <i>Thin-Walled Structures</i>. 2017:501-508. doi:<a href=\"https://doi.org/10.1016/j.tws.2017.11.011\">10.1016/j.tws.2017.11.011</a>","mla":"Striewe, Jan André, et al. “Manufacturing and Crashworthiness of Fabric-Reinforced Thermoplastic Composites.” <i>Thin-Walled Structures</i>, 2017, pp. 501–08, doi:<a href=\"https://doi.org/10.1016/j.tws.2017.11.011\">10.1016/j.tws.2017.11.011</a>."},"project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"date_created":"2020-02-20T14:00:29Z","type":"journal_article","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"year":"2017","title":"Manufacturing and crashworthiness of fabric-reinforced thermoplastic composites","status":"public","author":[{"id":"29413","full_name":"Striewe, Jan André","first_name":"Jan André","last_name":"Striewe"},{"full_name":"Reuter, Corin","first_name":"Corin","last_name":"Reuter"},{"last_name":"Sauerland","first_name":"Kim-Henning","full_name":"Sauerland, Kim-Henning"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"}],"publication_identifier":{"issn":["0263-8231"]},"publication_status":"published","date_updated":"2022-01-06T06:52:41Z","page":"501-508","_id":"15944","language":[{"iso":"eng"}],"user_id":"29413","doi":"10.1016/j.tws.2017.11.011"},{"citation":{"mla":"Weiß-Borkowski, Nathalie, et al. “Forming Limit Curves Determined in High-Speed Nakajima Tests and Predicted by a Strain Rate Sensitive Model.” <i>Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017</i>, 2017, doi:<a href=\"https://doi.org/10.1063/1.5007961\">10.1063/1.5007961</a>.","bibtex":"@inproceedings{Weiß-Borkowski_Lian_Marten_Tröster_Münstermann_Bleck_2017, title={Forming limit curves determined in high-speed Nakajima tests and predicted by a strain rate sensitive model}, DOI={<a href=\"https://doi.org/10.1063/1.5007961\">10.1063/1.5007961</a>}, booktitle={Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017}, author={Weiß-Borkowski, Nathalie and Lian, Juhne and Marten, Thorsten and Tröster, Thomas and Münstermann, Sebastian and Bleck, Wolfgang}, year={2017} }","ama":"Weiß-Borkowski N, Lian J, Marten T, Tröster T, Münstermann S, Bleck W. Forming limit curves determined in high-speed Nakajima tests and predicted by a strain rate sensitive model. In: <i>Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017</i>. ; 2017. doi:<a href=\"https://doi.org/10.1063/1.5007961\">10.1063/1.5007961</a>","ieee":"N. Weiß-Borkowski, J. Lian, T. Marten, T. Tröster, S. Münstermann, and W. Bleck, “Forming limit curves determined in high-speed Nakajima tests and predicted by a strain rate sensitive model,” in <i>Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017</i>, 2017.","apa":"Weiß-Borkowski, N., Lian, J., Marten, T., Tröster, T., Münstermann, S., &#38; Bleck, W. (2017). Forming limit curves determined in high-speed Nakajima tests and predicted by a strain rate sensitive model. In <i>Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017</i>. <a href=\"https://doi.org/10.1063/1.5007961\">https://doi.org/10.1063/1.5007961</a>","short":"N. Weiß-Borkowski, J. Lian, T. Marten, T. Tröster, S. Münstermann, W. Bleck, in: Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017, 2017.","chicago":"Weiß-Borkowski, Nathalie, Juhne Lian, Thorsten Marten, Thomas Tröster, Sebastian Münstermann, and Wolfgang Bleck. “Forming Limit Curves Determined in High-Speed Nakajima Tests and Predicted by a Strain Rate Sensitive Model.” In <i>Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017</i>, 2017. <a href=\"https://doi.org/10.1063/1.5007961\">https://doi.org/10.1063/1.5007961</a>."},"publication":"Proceedings of The 20th International ESAFORM Conference on Material Forming: ESAFORM 2017","date_created":"2020-02-24T16:28:58Z","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"type":"conference","author":[{"first_name":"Nathalie","last_name":"Weiß-Borkowski","full_name":"Weiß-Borkowski, Nathalie"},{"full_name":"Lian, Juhne","first_name":"Juhne","last_name":"Lian"},{"id":"338","full_name":"Marten, Thorsten","first_name":"Thorsten","last_name":"Marten"},{"full_name":"Tröster, Thomas","last_name":"Tröster","first_name":"Thomas","id":"553"},{"last_name":"Münstermann","first_name":"Sebastian","full_name":"Münstermann, Sebastian"},{"first_name":"Wolfgang","last_name":"Bleck","full_name":"Bleck, Wolfgang"}],"year":"2017","title":"Forming limit curves determined in high-speed Nakajima tests and predicted by a strain rate sensitive model","status":"public","date_updated":"2022-01-06T06:52:42Z","publication_status":"published","language":[{"iso":"eng"}],"_id":"16059","doi":"10.1063/1.5007961","user_id":"72008"},{"abstract":[{"text":"<jats:p>The main objective for an economic and ecological use of raw materials is the achievement of closed raw material cycles. Because of that, not only the manufacturing procedures are important during the development of new materials but also the recycling processes. Within the increased use of lightweight construction in recent years, the application of multi-material or hybrid structures reach high significance for the automotive industry. In this development, especially the carbon fibre reinforced plastics (CFRP) gained its importance. However, currently there are no recycling strategies available for hybrid structures; complete recycling processes for CFRP are still expandable. This work presents methods for separation of hybrid structures made of metal and CFRP, as well as the corresponding process windows and the boundary conditions. The separation is performed by introduction of thermal heat and the behaviour of these bonded compounds is analyzed based on shear tensile tests. The results of these studies are used to develop a complete recycling process for reclamation of hybrid structures.</jats:p>","lang":"eng"}],"publication":"Key Engineering Materials","citation":{"mla":"Schweizer, Swetlana, et al. “Separation of Hybrid Structures for the Reclaim of Their Single Components.” <i>Key Engineering Materials</i>, 2017, pp. 568–75, doi:<a href=\"https://doi.org/10.4028/www.scientific.net/kem.742.568\">10.4028/www.scientific.net/kem.742.568</a>.","ama":"Schweizer S, Becker-Staines A, Tröster T. Separation of Hybrid Structures for the Reclaim of their Single Components. <i>Key Engineering Materials</i>. 2017:568-575. doi:<a href=\"https://doi.org/10.4028/www.scientific.net/kem.742.568\">10.4028/www.scientific.net/kem.742.568</a>","bibtex":"@article{Schweizer_Becker-Staines_Tröster_2017, title={Separation of Hybrid Structures for the Reclaim of their Single Components}, DOI={<a href=\"https://doi.org/10.4028/www.scientific.net/kem.742.568\">10.4028/www.scientific.net/kem.742.568</a>}, journal={Key Engineering Materials}, author={Schweizer, Swetlana and Becker-Staines, Anna and Tröster, Thomas}, year={2017}, pages={568–575} }","apa":"Schweizer, S., Becker-Staines, A., &#38; Tröster, T. (2017). Separation of Hybrid Structures for the Reclaim of their Single Components. <i>Key Engineering Materials</i>, 568–575. <a href=\"https://doi.org/10.4028/www.scientific.net/kem.742.568\">https://doi.org/10.4028/www.scientific.net/kem.742.568</a>","ieee":"S. Schweizer, A. Becker-Staines, and T. Tröster, “Separation of Hybrid Structures for the Reclaim of their Single Components,” <i>Key Engineering Materials</i>, pp. 568–575, 2017.","short":"S. Schweizer, A. Becker-Staines, T. Tröster, Key Engineering Materials (2017) 568–575.","chicago":"Schweizer, Swetlana, Anna Becker-Staines, and Thomas Tröster. “Separation of Hybrid Structures for the Reclaim of Their Single Components.” <i>Key Engineering Materials</i>, 2017, 568–75. <a href=\"https://doi.org/10.4028/www.scientific.net/kem.742.568\">https://doi.org/10.4028/www.scientific.net/kem.742.568</a>."},"type":"journal_article","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"date_created":"2020-02-24T16:32:21Z","date_updated":"2022-01-06T06:52:42Z","publication_status":"published","status":"public","title":"Separation of Hybrid Structures for the Reclaim of their Single Components","year":"2017","author":[{"full_name":"Schweizer, Swetlana","first_name":"Swetlana","last_name":"Schweizer","id":"8938"},{"last_name":"Becker-Staines","first_name":"Anna","full_name":"Becker-Staines, Anna"},{"full_name":"Tröster, Thomas","first_name":"Thomas","last_name":"Tröster","id":"553"}],"publication_identifier":{"issn":["1662-9795"]},"doi":"10.4028/www.scientific.net/kem.742.568","user_id":"72008","page":"568-575","_id":"16062","language":[{"iso":"eng"}]},{"user_id":"11207","_id":"16063","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:52:42Z","year":"2017","title":"Approve of porostiy for increasing process speed in the laser melting process of Ti6Al4V","status":"public","author":[{"id":"11207","full_name":"Ahlers, Dominik","last_name":"Ahlers","first_name":"Dominik"},{"id":"553","last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas"}],"conference":{"location":"Austin, Texas, USA","name":"28th Annual International Solid Freeform Fabrication Symposium 2017","start_date":"2017-08-07","end_date":"2017-08-09"},"type":"conference","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"},{"_id":"219"}],"date_created":"2020-02-24T16:34:43Z","citation":{"mla":"Ahlers, Dominik, and Thomas Tröster. <i>Approve of Porostiy for Increasing Process Speed in the Laser Melting Process of Ti6Al4V</i>. 2017.","bibtex":"@inproceedings{Ahlers_Tröster_2017, title={Approve of porostiy for increasing process speed in the laser melting process of Ti6Al4V}, author={Ahlers, Dominik and Tröster, Thomas}, year={2017} }","ama":"Ahlers D, Tröster T. 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