m (Scipediacontent moved page Draft Content 226140510 to Katzmayr et al 2022a) |
|||
Line 5: | Line 5: | ||
== Video == | == Video == | ||
{{#evt:service=cloudfront|id=277557|alignment=center|filename=795.mp4}} | {{#evt:service=cloudfront|id=277557|alignment=center|filename=795.mp4}} | ||
− | + | ||
− | == | + | == Abstract == |
+ | <pdf>Media:Katzmayr_et_al_2022a_5964_795_abstract.pdf</pdf> | ||
+ | |||
+ | == Full paper == | ||
<pdf>Media:Draft_Content_226140510795_paper.pdf</pdf> | <pdf>Media:Draft_Content_226140510795_paper.pdf</pdf> |
Nowadays, industrial processes like sheet metal bending or punching are performed with high precision. Further optimizations are only possible by simulation and appropriate material models and parameters. Goal of this work is to find a material model suitable for both, bending and punching processes, including the effects of plasticity at high strains and strain rates. The models are calibrated by material tests like tension or torsion tests.
Published on 28/02/22
Accepted on 28/02/22
Submitted on 28/02/22
Volume CT17 - Industrial Applications, 2022
DOI: 10.23967/complas.2021.044
Licence: CC BY-NC-SA license
Are you one of the authors of this document?