Zyklische Scherprüfung metallischer Folien/Cyclic shear testing for metallic foils
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Bibliographic information

Open Access Full access
wt Werkstattstechnik online
Volume 113 (2023), Issue 10
- Authors:
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- Publisher
- VDI fachmedien, Düsseldorf
- Copyright Year
- 2023
- ISSN-Online
- 1436-4980
- ISSN-Print
- 1436-4980
Chapter information
Open Access Full access
Volume 113 (2023), Issue 10
Zyklische Scherprüfung metallischer Folien/Cyclic shear testing for metallic foils
- Authors:
- | | | |
- ISSN-Print
- 1436-4980
- ISSN-Online
- 1436-4980
- Preview:
Bibliography
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- [1] Vollertsen, F.; Biermann, D.; Hansen, H.N. et al.: Size effects in manufacturing of metallic components. CIRP Ann Manuf Technol 58 (2009) 2, pp. 566–587 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [2] Neto, D. M.; Oliveira, M. C.; Alves, J. L. et al.: Numerical study on the formability of metallic bipolar plates for proton exchange membrane (PEM) fuel cells. Metals 9 (2019) 7, # 810 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [3] Hu, Q.; Zhang, D.; Fu, H. et al.: Investigation of stamping process of metallic bipolar plates in PEM fuel cell – numerical simulation and experiments. International Journal of Hydrogen Energy 39 (2014) 25, pp. 13770–13776 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [4] Beck, M.; Riedmüller, K. R.; Liewald, M. et al.: Investigation on the influence of geometric parameters on the dimensional accuracy of high-precision embossed metallic bipolar plates. In: Liewald, M. (Hrsg.): Production at the Leading Edge of Technology. Proceedings of the 12th Congress of the German Academic Association for Production Technology (WGP), Stuttgart, 2022 pp. 427–438 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [5] Bauer, A.: Experimentelle und numerische Untersuchungen zur Analyse der umform-technischen Herstellung metallischer Bipolarplatten. Dissertation, TU Chemnitz, 2020 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [6] Adzima, F.; Balan, T.; Manach, P. Y.: Springback prediction for a mechanical micro connector using CPFEM based numerical simulations. International Journal of Material Forming 13 (2020) pp. 649–659 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [7] Porstmann, S.; Wannemacher, T.; Drossel, W. G.: A comprehensive comparison of state-of-the-art manufacturing methods for fuel cell bipolar plates including anticipated future industry trends. Journal of Manufacturing Processes 60 (2020) pp. 366–383 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [8] Vollertsen, F.; Schulze Niehoff, H.; Hu, Z.: State of the art in micro forming. I International Journal of Machine Tools and Manufacture 46 (2006) 11, pp. 1172–1179 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [9] Pham, C.; Adzima, F.; Coër, J. et al.: Anti-buckling device for ultra-thin metallic sheets under large and reversed shear strain paths. Experimental Mechanics 57 (2017) pp. 593–602 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [10] Yoshida, F.; Uemori, T.: A model of large-strain cyclic plasticity and its application to springback simulation. International Journal of Mechanical Sciences 45 (2003) 10, pp. 1687–1702 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [11] Chaboche, J.L.: Time-independent constitutive theories for cyclic plasticity. International Journal of Plasticity 2 (1986) 2, pp. 149–188 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [12] Chaboche, J.L.: Constitutive equations for cyclic plasticity and cyclic viscoplasticity. International Journal of Plasticity 5 (1989) 3, pp. 247–302 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [13] Bouvier, S.; Haddadi, H.; Levée, P. et al.: Simple shear test: experimental techniques and characterization of the plastic anisotropy of rolled sheets at large strains. Journal of Materials Technology 172 (2006) pp. 96–103 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [14] Yin, Q.; Zillmann, B.; Suttner, S. et al.: An experimental and numerical investigation of different shear test configurations for sheet metal characterization. International Journal of Solids and Structures 51 (2014) 5, pp. 1066–1074 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [15] Brosius, A.; Yin, Q.; Güner, A. et al.: A new shear test for sheet metal characterization. Steel Research International 82 (2011) 4, pp. 323–328 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60
- [16] Zhang, P.; Pereira, M. P.; Abeyrathna, B. et al.: Improving the shear test to determine shear fracture limits for thin stainless steel sheet by shape optimisation. International Journal of Mechanical Sciences 164 (2019), #105116 Open Google Scholar DOI: 10.37544/1436-4980-2023-10-60