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A constitutive equation for predicting the material nonlinear behavior of AISI 316L, 321, and 347 stainless steel under low-temperature conditions

机译:预测低温下AISI 316L,321和347不锈钢材料非线性行为的本构方程

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摘要

In the present study, a viscoplastic constitutive model is developed based on the results of uniaxial tensile tests on austenitic stainless steels AISI 316L, 321, and 347. Because austenitic stainless steel exhibits nonlinear plastic behavior at low temperatures, investigating the mechanical characteristics and the constitutive equation is necessary. First, mechanical characteristics such as the hardening effect and the strain-rate effect are analyzed by introducing the strain-hardening rate. Second, a constitutive equation is developed based on the Bodner-Partom viscoplastic model for describing the nonlinear hardening behavior. The Bodner-Chan damage model is then coupled with the viscoplastic model for describing the material degradation, and its material parameter identification method is introduced. Finally, to verify the effectiveness of the proposed equation, a user-defined material subroutine (UMAT) interface, which is offered by the finite element software ABAQUS, is developed. The numerical analysis results are compared with tensile testing results to conduct a feasibility study.
机译:在本研究中,基于奥氏体不锈钢AISI 316L,321和347的单轴拉伸试验结果,建立了粘塑性本构模型。由于奥氏体不锈钢在低温下表现出非线性塑性行为,因此研究了其力学特性和本构关系等式是必要的。首先,通过引入应变硬化速率来分析诸如硬化效应和应变速率效应的机械特性。其次,基于Bodner-Partom粘塑性模型建立了本构方程,用于描述非线性硬化行为。然后将Bodner-Chan损伤模型与粘塑性模型耦合以描述材料降解,并介绍了其材料参数识别方法。最后,为验证所提方程的有效性,开发了由有限元软件ABAQUS提供的用户定义材料子程序(UMAT)接口。将数值分析结果与拉伸试验结果进行比较,以进行可行性研究。

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