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Return mapping with a line search method for integrating stress of the distortional hardening law with differential softening

机译:基于线搜索方法的畸变硬化定律应力与微分软化积分的回波映射

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ABSTR A C T A stress-update algorithm for the recently proposed distortional anisotropic hardening law is developed based on the Newton-Raphson (N-R) algorithm and line search method. The investigated yield function enables the modeling of complex path-dependent flow stress evolutions, particularly the Bauschinger effect, latent hardening/softening, and differential permanent softening. Computationally, the continuous distortion of the yield function under strain-path changes leads to numerical instability, which is overcome by a newly reformulated step-size control method in the line search algorithm. The developed algorithms were implemented in ABAQUS using the closest-point projection method and validated for extra-deep drawing quality and DP780 steel sheets in terms of numerical accuracy and stability under reverse-and cross-loading path changes. The results show that the return-mapping algorithm signifi-cantly improves the accuracy and speed of convergence when the proposed line search method is incor-porated. In contrast, the conventional N-R based algorithm fails to obtain converged stresses under abrupt loading path changes owing to the sharp corners introduced by the distorted yield surface. (c) 2021 Elsevier Ltd. All rights reserved.
机译:基于Newton-Raphson(N-R)算法和线搜索方法,针对最近提出的畸变各向异性硬化定律,发展了一种应力更新算法。所研究的屈服函数能够模拟复杂的路径相关流动应力演变,特别是鲍辛格效应、潜硬化/软化和微分永久软化。在计算上,应变路径变化下屈服函数的连续畸变导致数值不稳定,这可以通过线搜索算法中新制定的步长控制方法克服。所开发的算法在ABAQUS中采用最近点投影方法实现,并验证了超深冲质量和DP780钢板在反向和交叉加载路径变化下的数值精度和稳定性。结果表明,当所提出的线搜索方法集成时,返回映射算法显著提高了收敛的精度和速度。相比之下,传统的基于N-R的算法由于屈服面变形引入的尖角,在加载路径的突然变化下无法获得收敛应力。(c) 2021 爱思唯尔有限公司保留所有权利。

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