粘塑性
冯·米塞斯屈服准则
材料科学
各向同性
硬化(计算)
有限元法
幂律
应变硬化指数
热力学
机械
本构方程
数学
复合材料
物理
图层(电子)
量子力学
统计
作者
Philip Oppermann,Ralf Denzer,Andreas Menzel
标识
DOI:10.1007/s00466-021-02103-4
摘要
Abstract In this contribution, a model for the thermomechanically coupled behaviour of case hardening steel is introduced with application to 16MnCr5 (1.7131). The model is based on a decomposition of the free energy into a thermo-elastic and a plastic part. Associated viscoplasticity, in terms of a temperature-depenent Perzyna-type power law, in combination with an isotropic von Mises yield function takes respect for strain-rate dependency of the yield stress. The model covers additional temperature-related effects, like temperature-dependent elastic moduli, coefficient of thermal expansion, heat capacity, heat conductivity, yield stress and cold work hardening. The formulation fulfils the second law of thermodynamics in the form of the Clausius–Duhem inequality by exploiting the Coleman–Noll procedure. The introduced model parameters are fitted against experimental data. An implementation into a fully coupled finite element model is provided and representative numerical examples are presented showing aspects of the localisation and regularisation behaviour of the proposed model.
科研通智能强力驱动
Strongly Powered by AbleSci AI