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首页> 外文期刊>Mechanics of materials >An improved elasto-plastic constitutive model for the exquisite description of stress-strain hysteresis loops with cyclic hardening and softening effects
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An improved elasto-plastic constitutive model for the exquisite description of stress-strain hysteresis loops with cyclic hardening and softening effects

机译:一种改进的弹性塑性本构模型,用于循环硬化和软化效应的应力 - 应变滞后环的精湛描述

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摘要

In this study, a finite cyclic elasto-plastic constitutive model is developed to simulate the cyclic hardening and softening of the low-yield-point steel BLY160. Compared with existing models, an improved description of the stress-strain hysteresis loops is achieved by introducing a modified Chaboche kinematic hardening rule and a nonlinear isotropic hardening rule extended with a strain memory surface. In the proposed kinematic hardening rule, the backstress is decomposed into three parts for short, middle, and long ranges, with each of them obeying an Armstrong-Frederick (A-F) evolution rule consisting of a linear hardening and dynamic recovery term. To incorporate the significant effect of the kinematic hardening rule on the shape change in hysteresis loops, a dynamic recovery coefficient is postulated herein to develop with not only the accumulated plastic strain but also the memorized strain range. In addition, a hardening factor is introduced to the linear hardening term to consider the different plastic moduli of monotonic and cyclic deformations. The model parameters are identified in an exquisite manner by discriminating the contributions of the isotropic and kinematic components to the cyclic hardening and softening phenomena, which is implemented through a quantitative evaluation of the tested hysteresis loops. The comparison between the numerical prediction and experimental results indicates that the developed constitutive model can elaborately simulate the cyclic behaviour of the investigated steel. The results demonstrate that the entire evolution process of the stress-strain hysteresis curve characterized by the cyclic hardening and softening, transient Bauschinger effect, and strain-range dependence can be adequately described by the proposed model.
机译:在该研究中,开发了有限循环弹性塑性本构模型以模拟低屈服点钢Bly160的循环硬化和软化。与现有模型相比,通过引入改性的Chaboche运动硬化规则和用应变存储表面延伸的非线性各向同性硬化规则来实现应力 - 应变滞后环的改进描述。在所提出的运动硬化规则中,余下将余量分解成短,中间和长距离的三个部分,每个部分遵循由线性硬化和动态恢复术语组成的阿姆斯特朗 - 弗雷德里克(A-F)演化规则。为了纳入运动硬化规则对滞后环的形状变化的显着影响,本文假设动态恢复系数,不仅具有累积的塑性应变,而且是记忆的应变范围。此外,将硬化因子引入线性化硬化项,以考虑单调和循环变形的不同塑料模量。通过区分各向同性和运动组分与循环硬化和软化现象的贡献来鉴定模型参数,这通过测试滞后环的定量评估来实现。数值预测和实验结果之间的比较表明,发育的本构模型可以精心模拟研究钢的循环行为。结果表明,通过循环硬化和软化,瞬态Bauschinger效应和应变范围依赖性的应力 - 应变滞后曲线的整个演化过程可以通过该模型得到充分描述。

著录项

  • 来源
    《Mechanics of materials》 |2020年第11期|103590.1-103590.14|共14页
  • 作者单位

    Beihang Univ Sch Transportat Sci & Engn Beijing 100191 Peoples R China|Tsinghua Univ Key Lab Civil Engn Safety & Durabil China Educ Minist Dept Civil Engn Beijing 100084 Peoples R China;

    Tsinghua Univ Key Lab Civil Engn Safety & Durabil China Educ Minist Dept Civil Engn Beijing 100084 Peoples R China;

    Beihang Univ Sch Transportat Sci & Engn Beijing 100191 Peoples R China;

    Tsinghua Univ Key Lab Civil Engn Safety & Durabil China Educ Minist Dept Civil Engn Beijing 100084 Peoples R China;

    Beijing Univ Technol Key Lab Urban Secur & Disaster Engn Educ Minist Beijing 100124 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stress-strain hysteresis loops; Cyclic hardening/softening; Transient bauschinger effect; Strain range dependence; Constitutive modelling;

    机译:应力 - 应变滞后环;循环硬化/软化;瞬态Bauschinger效应;应变范围依赖性;本构型建模;

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