一方向炭素繊維強化熱可塑性樹脂の異方性弾塑性挙動の観察と材料構成則(異方性降伏関数とゆがみ硬化則)
Author:
Affiliation:
1. CYBERNET SYSTEMS CO., LTD.
2. Department of Mechanical Engineering, Nihon University
3. International Research Institute of Disaster Science, Tohoku University
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/transjsme/89/927/89_23-00201/_pdf
Reference28 articles.
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2. Armstrong, P. J. and Frederick, C. O., A mathematical representation of the multiaxial bauschinger effect, Materials at High Temperatures, Vol.24 (2007), pp.1-26.
3. Baltov, A. and Sawczuk, A., A rule of anisotropic hardening, Acta Mechanica, Vol.1, No.2 (1964), pp.81-92.
4. Barlat, F., Aretz, H., Yoon, J. W., Karabin, M. E., Brem, J. C. and Dick, R. E., Linear transfomation-based anisotropic yield functions, nternational Journal of Plasticity, Vol.21, No.5 (2005), pp.1009-1039.
5. Barlat, F., Brem J. C., Yoon, J. W., Chung, K., Dick, R. E., Lege, D. J., Pourboghrat, F., Choi S. H. and Chu E., Plane stress yield function for aluminum alloy sheets - part 1: theory, International Journal of Plasticity, Vol.19 (2003), pp.1297-1319.
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