An implicit algorithm using explicit correctors for the kinematic hardening model with multiple back stresses

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Abstract

This paper presents an efficient mathematical algorithm for a class of non-linear kinematic hardening models with multiple back stresses, as an extension of the implicit integration algorithm for a single back stress hardening model. Explicit formulations for general three-dimensional stress states as well as plane stress and plane strain are given. The new formulation is implemented in a general-purpose finite element code, ABAQUS, and is verified by comparison with the existing formulation for the single back-stress constitutive model. Comparison is also made with the experimental results obtained from a plate containing a circular hole subjected to cyclic loading, demonstrating the validity of new method. Copyright © 2001 John Wiley & Sons, Ltd.

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Sawyer, J. P. G., Wang, C. H., & Jones, R. (2001). An implicit algorithm using explicit correctors for the kinematic hardening model with multiple back stresses. International Journal for Numerical Methods in Engineering, 50(9), 2093–2107. https://doi.org/10.1002/nme.111

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