A More General Orthotropic Strain-Rate Potential Based on the Linear Transformation Method
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-42093-1_59
Reference12 articles.
1. Aretz, H., Barlat, F.: New convex yield functions for orthotropic metal plasticity. Int. J. Non Linear. Mech. 51, 97–111 (2013)
2. Baral, M., Hama, T., Knudsen, E., Korkolis, Y.P.: Plastic deformation of commercially-pure titanium: experiments and modeling. Int. J. Plast. 105, 164–194 (2018)
3. Barlat, F., Aretz, H., Yoon, J.W., Karabin, M., Brem, J.C., Dick, R.: Linear transformation-based anisotropic yield functions. Int. J. Plast. 21, 1009–1039 (2005)
4. Cazacu, O., Ionescu, I.R., Yoon, J.W.: Orthotropic strain rate potential for the description of anisotropy in tension and compression of metals. Int. J. Plast. 26, 887–904 (2010)
5. Cazacu, O., Plunkett, B., Barlat, F.: Orthotropic yield criterion for hexagonal closed packed metals. Int. J. Plast. 22, 1171–1194 (2006)
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