Elastoplastic analysis by return-mapping method with rigorous loading criterion for extended subloading surface model
Author:
Affiliation:
1. Yanmar Co. Ltd., Research and Development Center
2. MSC software Co. Ltd.
3. Kyushu University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/85/870/85_18-00327/_pdf
Reference24 articles.
1. Anjiki, T., Masanori, O. and Koichi, H., Elastoplastic analysis by complete implicit stress-update algorithm based on the extended subloading surface model, Transactions of the JSME (in Japanese), Vol.82, No.839 (2016), DOI:10.1299/transjsme.16-00029.
2. Armstrong, P. J. and Frederick, C. O., A mathematical representation of the multiaxial Bauschinger effect, GEGB Report RD/BN/731, Berkeley Nuclear Laboratories (1966).
3. Chaboche, J. L., Time-independent constitutive theories for cyclic plasticity, International Journal of Plasticity, Vol.2, No.2 (1986), pp.149-188.
4. Dafalias, Y. F. and Popov, E. P., A model of nonlinearly hardening materials for complex loading, Acta Mechanica, Vol.21 (1975), pp.173-192.
5. Fincato, R. and Tsutsumi, S., Closest-point projection method for the extended subloading surface model, Acta Mechanica, Vol.228(2017), pp.4213-4233.
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