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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Uniaxial ratcheting of SS304 stainless steel at high temperatures: visco-plastic constitutive model
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Uniaxial ratcheting of SS304 stainless steel at high temperatures: visco-plastic constitutive model

机译:SS304不锈钢在高温下的单轴棘轮:粘塑性本构模型

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The uniaxial ratcheting of SS304 stainless steel at high temperatures (300, 600 and 700 degreesC) were analyzed experimentally, and described by a cyclic constitutive visco-plasticity model. The rate dependence of the material was accounted for by introducing a viscous term. The cyclic hardening and cyclic flow behavior of the material under asymmetrical stress-controlled cycling were described by the evolution rules of kinematic hardening back stress and isotropic deforming resistance. Under the isothermal condition, temperature effect was included by terms involving temperature in the evolution equations of isotropic deforming resistance. The effect of load history on ratcheting was also considered by introducing a fading memory function of the maximum inelastic strain amplitude and isotropic deformation resistance. After the material constants were determined from the experimental data, the uniaxial ratcheting of SS304 stainless steel was numerically simulated and compared with the corresponding experimental results at high temperatures. The predicted results agree well with the experimental ones. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 22]
机译:对SS304不锈钢在高温(300、600和700℃)下的单轴棘轮进行了实验分析,并通过循环本构粘塑性模型进行了描述。通过引入粘性项来解释材料的速率依赖性。通过运动硬化背应力和各向同性变形阻力的演化规律描述了材料在非对称应力控制循环下的循环硬化和循环流动行为。在等温条件下,各向同性变形阻力的演化方程中,温度效应被涉及温度的项包括在内。还通过引入最大无弹性应变幅度和各向同性抗变形力的衰落记忆功能,考虑了载荷历史对棘轮的影响。从实验数据确定材料常数后,对SS304不锈钢的单轴棘轮进行了数值模拟,并与相应的高温实验结果进行了比较。预测结果与实验结果吻合良好。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:22]

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