低周疲劳
材料科学
软化
硬化(计算)
有限元法
结构工程
本构方程
非线性系统
磁滞
运动学
变形(气象学)
包辛格效应
应变硬化指数
复合材料
可塑性
工程类
经典力学
物理
图层(电子)
量子力学
作者
Farid Reza Biglari,P. Lombardi,S. Budano,Catrin M. Davies,Kamran Nikbin
标识
DOI:10.1111/j.1460-2695.2012.01695.x
摘要
ABSTRACT Experimental data have been generated and finite element models developed to examine the low cycle fatigue (LCF) life of a 9Cr (FB2) steel. A novel approach, employing a local ductile damage initiation and failure model, using the hysteresis total stress–strain energy concept combined with element removal, has been employed to predict the failure in the experimental tests. The 9Cr steel was found to exhibit both cyclic softening and nonlinear kinematic hardening behaviour. The finite element analysis of the material's cyclic loading was based on a nonlinear kinematic hardening criterion using the Chaboche constitutive equations. The models’ parameters were calibrated using the experimental test data available. The cyclic softening model in conjunction with the progressive damage evolution model successfully predicted the deformation behaviour and failure times of the experimental tests for the 9Cr steels performed.
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