[{"date_updated":"2023-04-27T09:43:18Z","volume":2,"author":[{"last_name":"Gräßler","orcid":"0000-0001-5765-971X","full_name":"Gräßler, Iris","id":"47565","first_name":"Iris"},{"last_name":"Oleff","orcid":"0000-0002-0983-1850","id":"41188","full_name":"Oleff, Christian","first_name":"Christian"},{"first_name":"Michael","full_name":"Hieb, Michael","id":"72252","last_name":"Hieb"},{"first_name":"Daniel","full_name":"Preuß, Daniel","id":"40253","last_name":"Preuß"}],"doi":"10.1017/pds.2022.189","publication_identifier":{"issn":["2732-527X"]},"publication_status":"published","intvolume":"         2","page":"1865-1874","citation":{"ama":"Gräßler I, Oleff C, Hieb M, Preuß D. Automated Requirement Dependency Analysis for Complex Technical Systems. <i>Proceedings of the Design Society</i>. 2022;2:1865-1874. doi:<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>","chicago":"Gräßler, Iris, Christian Oleff, Michael Hieb, and Daniel Preuß. “Automated Requirement Dependency Analysis for Complex Technical Systems.” <i>Proceedings of the Design Society</i> 2 (2022): 1865–74. <a href=\"https://doi.org/10.1017/pds.2022.189\">https://doi.org/10.1017/pds.2022.189</a>.","ieee":"I. Gräßler, C. Oleff, M. Hieb, and D. Preuß, “Automated Requirement Dependency Analysis for Complex Technical Systems,” <i>Proceedings of the Design Society</i>, vol. 2, pp. 1865–1874, 2022, doi: <a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>.","apa":"Gräßler, I., Oleff, C., Hieb, M., &#38; Preuß, D. (2022). Automated Requirement Dependency Analysis for Complex Technical Systems. <i>Proceedings of the Design Society</i>, <i>2</i>, 1865–1874. <a href=\"https://doi.org/10.1017/pds.2022.189\">https://doi.org/10.1017/pds.2022.189</a>","bibtex":"@article{Gräßler_Oleff_Hieb_Preuß_2022, title={Automated Requirement Dependency Analysis for Complex Technical Systems}, volume={2}, DOI={<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>}, journal={Proceedings of the Design Society}, publisher={Cambridge University Press (CUP)}, author={Gräßler, Iris and Oleff, Christian and Hieb, Michael and Preuß, Daniel}, year={2022}, pages={1865–1874} }","short":"I. Gräßler, C. Oleff, M. Hieb, D. Preuß, Proceedings of the Design Society 2 (2022) 1865–1874.","mla":"Gräßler, Iris, et al. “Automated Requirement Dependency Analysis for Complex Technical Systems.” <i>Proceedings of the Design Society</i>, vol. 2, Cambridge University Press (CUP), 2022, pp. 1865–74, doi:<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>."},"_id":"31791","department":[{"_id":"152"}],"user_id":"5905","article_type":"original","type":"journal_article","status":"public","publisher":"Cambridge University Press (CUP)","date_created":"2022-06-07T10:48:12Z","title":"Automated Requirement Dependency Analysis for Complex Technical Systems","quality_controlled":"1","year":"2022","language":[{"iso":"eng"}],"publication":"Proceedings of the Design Society","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:p>Requirements changes are a leading cause for project failures. Due to propagation effects, change management requires dependency analysis. Existing approaches have shortcomings regarding ability to process large requirement sets, availability of required data, differentiation of propagation behavior and consideration of higher order dependencies. This paper introduces a new method for advanced requirement dependency analysis based on machine learning. Evaluation proves applicability and high performance by means of a case example, 4 development projects and 3 workshops with industry experts.</jats:p>"}]},{"status":"public","type":"conference","publication":"Tagungsband der VDI Mechatronik 2022","language":[{"iso":"ger"}],"_id":"32147","user_id":"5905","department":[{"_id":"152"}],"year":"2022","citation":{"ama":"Gräßler I, Roesmann D, Pottebaum J, Corves B, Mandischer N, Gürtler M. Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr. In: <i>Tagungsband der VDI Mechatronik 2022</i>. ; 2022:151-156. doi:<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>","ieee":"I. Gräßler, D. Roesmann, J. Pottebaum, B. Corves, N. Mandischer, and M. Gürtler, “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr,” in <i>Tagungsband der VDI Mechatronik 2022</i>, Darmstadt, 2022, pp. 151–156, doi: <a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>.","chicago":"Gräßler, I., Daniel Roesmann, Jens Pottebaum, Burkhard Corves, Nils Mandischer, and Marius Gürtler. “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr.” In <i>Tagungsband der VDI Mechatronik 2022</i>, 151–56, 2022. <a href=\"https://doi.org/10.26083/tuprints-00020963\">https://doi.org/10.26083/tuprints-00020963</a>.","short":"I. Gräßler, D. Roesmann, J. Pottebaum, B. Corves, N. Mandischer, M. Gürtler, in: Tagungsband der VDI Mechatronik 2022, 2022, pp. 151–156.","bibtex":"@inproceedings{Gräßler_Roesmann_Pottebaum_Corves_Mandischer_Gürtler_2022, title={Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr}, DOI={<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>}, booktitle={Tagungsband der VDI Mechatronik 2022}, author={Gräßler, I. and Roesmann, Daniel and Pottebaum, Jens and Corves, Burkhard and Mandischer, Nils and Gürtler, Marius}, year={2022}, pages={151–156} }","mla":"Gräßler, I., et al. “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr.” <i>Tagungsband der VDI Mechatronik 2022</i>, 2022, pp. 151–56, doi:<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>.","apa":"Gräßler, I., Roesmann, D., Pottebaum, J., Corves, B., Mandischer, N., &#38; Gürtler, M. (2022). Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr. <i>Tagungsband der VDI Mechatronik 2022</i>, 151–156. <a href=\"https://doi.org/10.26083/tuprints-00020963\">https://doi.org/10.26083/tuprints-00020963</a>"},"page":"151-156","publication_status":"published","quality_controlled":"1","related_material":{"link":[{"relation":"confirmation","url":"https://tuprints.ulb.tu-darmstadt.de/20963/"}]},"title":"Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr","doi":"10.26083/tuprints-00020963","conference":{"start_date":"20220323","name":"Fachtagung VDI MECHATRONIK 2022","location":"Darmstadt","end_date":"20220324"},"date_updated":"2023-04-27T09:42:09Z","author":[{"last_name":"Gräßler","orcid":"0000-0001-5765-971X","id":"47565","full_name":"Gräßler, I.","first_name":"I."},{"first_name":"Daniel","last_name":"Roesmann","full_name":"Roesmann, Daniel","id":"54680"},{"first_name":"Jens","id":"405","full_name":"Pottebaum, Jens","orcid":"http://orcid.org/0000-0001-8778-2989","last_name":"Pottebaum"},{"last_name":"Corves","full_name":"Corves, Burkhard","first_name":"Burkhard"},{"full_name":"Mandischer, Nils","last_name":"Mandischer","first_name":"Nils"},{"last_name":"Gürtler","full_name":"Gürtler, Marius","first_name":"Marius"}],"date_created":"2022-06-24T07:43:50Z"},{"language":[{"iso":"eng"}],"_id":"33889","user_id":"5905","department":[{"_id":"152"}],"status":"public","type":"conference","title":"Extended RFLP for complex technical systems","conference":{"end_date":"20221026","location":"Wien","name":"8th IEEE International Symposium on Systems Engineering","start_date":"20221024"},"date_updated":"2023-04-27T09:40:34Z","author":[{"last_name":"Gräßler","orcid":"0000-0001-5765-971X","full_name":"Gräßler, Iris","id":"47565","first_name":"Iris"},{"full_name":"Wiechel, Dominik","id":"67161","last_name":"Wiechel","first_name":"Dominik"},{"id":"41188","full_name":"Oleff, Christian","last_name":"Oleff","orcid":"0000-0002-0983-1850","first_name":"Christian"}],"date_created":"2022-10-26T13:25:17Z","place":"Wien","year":"2022","citation":{"ieee":"I. Gräßler, D. Wiechel, and C. Oleff, “Extended RFLP for complex technical systems,” presented at the 8th IEEE International Symposium on Systems Engineering, Wien, 2022.","chicago":"Gräßler, Iris, Dominik Wiechel, and Christian Oleff. “Extended RFLP for Complex Technical Systems.” Wien, 2022.","ama":"Gräßler I, Wiechel D, Oleff C. Extended RFLP for complex technical systems. In: ; 2022.","short":"I. Gräßler, D. Wiechel, C. Oleff, in: Wien, 2022.","bibtex":"@inproceedings{Gräßler_Wiechel_Oleff_2022, place={Wien}, title={Extended RFLP for complex technical systems}, author={Gräßler, Iris and Wiechel, Dominik and Oleff, Christian}, year={2022} }","mla":"Gräßler, Iris, et al. <i>Extended RFLP for Complex Technical Systems</i>. 2022.","apa":"Gräßler, I., Wiechel, D., &#38; Oleff, C. (2022). <i>Extended RFLP for complex technical systems</i>. 8th IEEE International Symposium on Systems Engineering, Wien."},"quality_controlled":"1"},{"publication_identifier":{"issn":["2076-3417"]},"publication_status":"published","intvolume":"        12","citation":{"bibtex":"@article{Joy_Weiß_Schramm_Kullmer_2022, title={Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations}, volume={12}, DOI={<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>}, number={157557}, journal={Applied Sciences}, publisher={MDPI AG}, author={Joy, Tintu David and Weiß, Deborah and Schramm, Britta and Kullmer, Gunter}, year={2022} }","mla":"Joy, Tintu David, et al. “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations.” <i>Applied Sciences</i>, vol. 12, no. 15, 7557, MDPI AG, 2022, doi:<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>.","short":"T.D. Joy, D. Weiß, B. Schramm, G. Kullmer, Applied Sciences 12 (2022).","apa":"Joy, T. D., Weiß, D., Schramm, B., &#38; Kullmer, G. (2022). Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations. <i>Applied Sciences</i>, <i>12</i>(15), Article 7557. <a href=\"https://doi.org/10.3390/app12157557\">https://doi.org/10.3390/app12157557</a>","ieee":"T. D. Joy, D. Weiß, B. Schramm, and G. Kullmer, “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations,” <i>Applied Sciences</i>, vol. 12, no. 15, Art. no. 7557, 2022, doi: <a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>.","chicago":"Joy, Tintu David, Deborah Weiß, Britta Schramm, and Gunter Kullmer. “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations.” <i>Applied Sciences</i> 12, no. 15 (2022). <a href=\"https://doi.org/10.3390/app12157557\">https://doi.org/10.3390/app12157557</a>.","ama":"Joy TD, Weiß D, Schramm B, Kullmer G. Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations. <i>Applied Sciences</i>. 2022;12(15). doi:<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>"},"date_updated":"2023-04-27T10:13:44Z","volume":12,"author":[{"first_name":"Tintu David","id":"30821","full_name":"Joy, Tintu David","last_name":"Joy"},{"first_name":"Deborah","id":"45673","full_name":"Weiß, Deborah","last_name":"Weiß"},{"first_name":"Britta","last_name":"Schramm","full_name":"Schramm, Britta","id":"4668"},{"last_name":"Kullmer","id":"291","full_name":"Kullmer, Gunter","first_name":"Gunter"}],"doi":"10.3390/app12157557","type":"journal_article","status":"public","_id":"34224","project":[{"grant_number":"418701707","name":"TRR 285: TRR 285","_id":"130"},{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"name":"TRR 285 – B04: TRR 285 - Subproject B04","_id":"143"}],"department":[{"_id":"143"}],"user_id":"45673","article_number":"7557","quality_controlled":"1","issue":"15","year":"2022","publisher":"MDPI AG","date_created":"2022-12-05T21:49:48Z","title":"Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations","publication":"Applied Sciences","abstract":[{"text":"Crack growth in structures depends on the cyclic loads applied on it, such as mechanical, thermal and contact, as well as residual stresses, etc. To provide an accurate simulation of crack growth in structures, it is of high importance to integrate all kinds of loading situations in the simulations. Adapcrack3D is a simulation program that can accurately predict the propagation of cracks in real structures. However, until now, this three-dimensional program has only considered mechanical loads and static thermal loads. Therefore, the features of Adapcrack3D have been extended by including contact loading in crack growth simulations. The numerical simulation of crack propagation with Adapcrack3D is generally carried out using FE models of structures provided by the user. For simulating models with contact loading situations, Adapcrack3D has been updated to work with FE models containing multiple parts and necessary features such as coupling and surface interactions. Because Adapcrack3D uses the submodel technique for fracture mechanical evaluations, the architecture of the submodel is also modified to simulate models with contact definitions between the crack surfaces. This paper discusses the newly implemented attribute of the program with the help of illustrative examples. The results confirm that the contact simulation in Adapcrack3D is a major step in improving the functionality of the program.","lang":"eng"}],"keyword":["Fluid Flow and Transfer Processes","Computer Science Applications","Process Chemistry and Technology","General Engineering","Instrumentation","General Materials Science"],"language":[{"iso":"eng"}]},{"conference":{"name":"7th International Conference on Crack Paths","start_date":"2021-09-21","end_date":"2021-09-24","location":"online"},"doi":"10.1016/j.prostr.2022.03.082","author":[{"first_name":"Deborah","last_name":"Weiß","id":"45673","full_name":"Weiß, Deborah"},{"last_name":"Schramm","id":"4668","full_name":"Schramm, Britta","first_name":"Britta"},{"first_name":"Gunter","last_name":"Kullmer","id":"291","full_name":"Kullmer, Gunter"}],"volume":39,"date_updated":"2023-04-27T10:17:21Z","citation":{"apa":"Weiß, D., Schramm, B., &#38; Kullmer, G. (2022). Influence of plane mixed-mode loading on the kinking angle of clinchable metal sheets. <i>Procedia Structural Integrity</i>, <i>39</i>, 139–147. <a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">https://doi.org/10.1016/j.prostr.2022.03.082</a>","bibtex":"@inproceedings{Weiß_Schramm_Kullmer_2022, title={Influence of plane mixed-mode loading on the kinking angle of clinchable metal sheets}, volume={39}, DOI={<a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">10.1016/j.prostr.2022.03.082</a>}, booktitle={Procedia Structural Integrity}, publisher={Elsevier BV}, author={Weiß, Deborah and Schramm, Britta and Kullmer, Gunter}, year={2022}, pages={139–147} }","mla":"Weiß, Deborah, et al. “Influence of Plane Mixed-Mode Loading on the Kinking Angle of Clinchable Metal Sheets.” <i>Procedia Structural Integrity</i>, vol. 39, Elsevier BV, 2022, pp. 139–47, doi:<a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">10.1016/j.prostr.2022.03.082</a>.","short":"D. Weiß, B. Schramm, G. Kullmer, in: Procedia Structural Integrity, Elsevier BV, 2022, pp. 139–147.","ieee":"D. Weiß, B. Schramm, and G. Kullmer, “Influence of plane mixed-mode loading on the kinking angle of clinchable metal sheets,” in <i>Procedia Structural Integrity</i>, online, 2022, vol. 39, pp. 139–147, doi: <a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">10.1016/j.prostr.2022.03.082</a>.","chicago":"Weiß, Deborah, Britta Schramm, and Gunter Kullmer. “Influence of Plane Mixed-Mode Loading on the Kinking Angle of Clinchable Metal Sheets.” In <i>Procedia Structural Integrity</i>, 39:139–47. Elsevier BV, 2022. <a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">https://doi.org/10.1016/j.prostr.2022.03.082</a>.","ama":"Weiß D, Schramm B, Kullmer G. Influence of plane mixed-mode loading on the kinking angle of clinchable metal sheets. In: <i>Procedia Structural Integrity</i>. Vol 39. Elsevier BV; 2022:139-147. doi:<a href=\"https://doi.org/10.1016/j.prostr.2022.03.082\">10.1016/j.prostr.2022.03.082</a>"},"page":"139-147","intvolume":"        39","publication_status":"published","publication_identifier":{"issn":["2452-3216"]},"user_id":"45673","department":[{"_id":"143"}],"project":[{"name":"TRR 285: TRR 285","_id":"130","grant_number":"418701707"},{"name":"TRR 285 - B: TRR 285 - Project Area B","_id":"132"},{"_id":"143","name":"TRR 285 – B04: TRR 285 - Subproject B04"}],"_id":"30726","status":"public","type":"conference","title":"Influence of plane mixed-mode loading on the kinking angle of clinchable metal sheets","date_created":"2022-03-30T08:34:10Z","publisher":"Elsevier BV","year":"2022","language":[{"iso":"eng"}],"keyword":["General Engineering","Energy Engineering and Power Technology"],"publication":"Procedia Structural Integrity"},{"status":"public","type":"journal_article","publication":"Journal of Advanced Joining Processes","article_number":"100135","keyword":["Mechanical Engineering","Mechanics of Materials","Engineering (miscellaneous)","Chemical Engineering (miscellaneous)"],"language":[{"iso":"eng"}],"project":[{"name":"TRR 285: TRR 285","_id":"130","grant_number":"418701707"},{"name":"TRR 285 – B04: TRR 285 - Subproject B04","_id":"143"},{"_id":"142","name":"TRR 285 – B03: TRR 285 - Subproject B03"},{"_id":"139","name":"TRR 285 – A05: TRR 285 - Subproject A05"}],"_id":"34070","user_id":"45673","department":[{"_id":"143"}],"year":"2022","citation":{"apa":"Schramm, B., Harzheim, S., Weiß, D., Joy, T. D., Hofmann, M., Mergheim, J., &#38; Wallmersperger, T. (2022). A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase. <i>Journal of Advanced Joining Processes</i>, Article 100135. <a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">https://doi.org/10.1016/j.jajp.2022.100135</a>","mla":"Schramm, Britta, et al. “A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase.” <i>Journal of Advanced Joining Processes</i>, 100135, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">10.1016/j.jajp.2022.100135</a>.","bibtex":"@article{Schramm_Harzheim_Weiß_Joy_Hofmann_Mergheim_Wallmersperger_2022, title={A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase}, DOI={<a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">10.1016/j.jajp.2022.100135</a>}, number={100135}, journal={Journal of Advanced Joining Processes}, publisher={Elsevier BV}, author={Schramm, Britta and Harzheim, Sven and Weiß, Deborah and Joy, Tintu David and Hofmann, Martin and Mergheim, Julia and Wallmersperger, Thomas}, year={2022} }","short":"B. Schramm, S. Harzheim, D. Weiß, T.D. Joy, M. Hofmann, J. Mergheim, T. Wallmersperger, Journal of Advanced Joining Processes (2022).","ama":"Schramm B, Harzheim S, Weiß D, et al. A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase. <i>Journal of Advanced Joining Processes</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">10.1016/j.jajp.2022.100135</a>","chicago":"Schramm, Britta, Sven Harzheim, Deborah Weiß, Tintu David Joy, Martin Hofmann, Julia Mergheim, and Thomas Wallmersperger. “A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase.” <i>Journal of Advanced Joining Processes</i>, 2022. <a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">https://doi.org/10.1016/j.jajp.2022.100135</a>.","ieee":"B. Schramm <i>et al.</i>, “A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase,” <i>Journal of Advanced Joining Processes</i>, Art. no. 100135, 2022, doi: <a href=\"https://doi.org/10.1016/j.jajp.2022.100135\">10.1016/j.jajp.2022.100135</a>."},"publication_status":"published","publication_identifier":{"issn":["2666-3309"]},"quality_controlled":"1","title":"A Review on the Modeling of the Clinching Process Chain - Part III: Operational Phase","doi":"10.1016/j.jajp.2022.100135","date_updated":"2023-04-27T10:14:11Z","publisher":"Elsevier BV","date_created":"2022-11-14T08:55:34Z","author":[{"last_name":"Schramm","full_name":"Schramm, Britta","id":"4668","first_name":"Britta"},{"full_name":"Harzheim, Sven","last_name":"Harzheim","first_name":"Sven"},{"first_name":"Deborah","id":"45673","full_name":"Weiß, Deborah","last_name":"Weiß"},{"full_name":"Joy, Tintu David","id":"30821","last_name":"Joy","first_name":"Tintu David"},{"last_name":"Hofmann","full_name":"Hofmann, Martin","first_name":"Martin"},{"full_name":"Mergheim, Julia","last_name":"Mergheim","first_name":"Julia"},{"full_name":"Wallmersperger, Thomas","last_name":"Wallmersperger","first_name":"Thomas"}]},{"doi":"10.1016/j.engfracmech.2022.108899","title":"Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method","date_created":"2022-12-06T14:59:46Z","author":[{"full_name":"Kullmer, Gunter","id":"291","last_name":"Kullmer","first_name":"Gunter"},{"full_name":"Weiß, Deborah","id":"45673","last_name":"Weiß","first_name":"Deborah"},{"first_name":"Britta","id":"4668","full_name":"Schramm, Britta","last_name":"Schramm"}],"date_updated":"2023-04-27T10:15:11Z","publisher":"Elsevier BV","citation":{"bibtex":"@article{Kullmer_Weiß_Schramm_2022, title={Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method}, DOI={<a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>}, number={108899}, journal={Engineering Fracture Mechanics}, publisher={Elsevier BV}, author={Kullmer, Gunter and Weiß, Deborah and Schramm, Britta}, year={2022} }","short":"G. Kullmer, D. Weiß, B. Schramm, Engineering Fracture Mechanics (2022).","mla":"Kullmer, Gunter, et al. “Development of a Method for the Separate Measurement of the Growth of Internal Crack Tips by Means of the Potential Drop Method.” <i>Engineering Fracture Mechanics</i>, 108899, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>.","apa":"Kullmer, G., Weiß, D., &#38; Schramm, B. (2022). Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method. <i>Engineering Fracture Mechanics</i>, Article 108899. <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">https://doi.org/10.1016/j.engfracmech.2022.108899</a>","chicago":"Kullmer, Gunter, Deborah Weiß, and Britta Schramm. “Development of a Method for the Separate Measurement of the Growth of Internal Crack Tips by Means of the Potential Drop Method.” <i>Engineering Fracture Mechanics</i>, 2022. <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">https://doi.org/10.1016/j.engfracmech.2022.108899</a>.","ieee":"G. Kullmer, D. Weiß, and B. Schramm, “Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method,” <i>Engineering Fracture Mechanics</i>, Art. no. 108899, 2022, doi: <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>.","ama":"Kullmer G, Weiß D, Schramm B. Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method. <i>Engineering Fracture Mechanics</i>. 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