首页> 外文会议>Engineering Plasticity and Its Applications from Nanoscale to Macroscale pt.2; Key Engineering Materials; vol.340-341 >Constitutive Modeling for Uniaxial Time-Dependent Ratcheting of SS304 Stainless Steel
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Constitutive Modeling for Uniaxial Time-Dependent Ratcheting of SS304 Stainless Steel

机译:SS304不锈钢单轴时变棘轮本构模型

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Based on the experimental results of uniaxial time-dependent ratcheting behavior of SS304 stainless steel at room temperature and 973K, three kinds of time-dependent constitutive models were employed to describe such time-dependent ratcheting by using the Ohno-Abdel-Karim kinematic hardening rule, i.e., a unified viscoplastic model, a creep-plasticity superposition model and a creep-viscoplasticity superposition model. The capabilities of such models to describe the time-dependent ratcheting were discussed by comparing with the corresponding experimental results. It is shown that the unified viscoplastic model cannot provide reasonable simulation to the time-dependent ratcheting, especially to those with certain peak/valley stress hold and at 973K; the proposed creep-plasticity superposition model is reasonable when the creep is a dominant factor of the deformation, however, it cannot provide a reasonable description when the creep is weak; the creep-viscoplastic superposition model is reasonable not only at room temperature but also at high temperature.
机译:基于SS304不锈钢在室温和973K时单轴时变棘轮行为的实验结果,采用Ohno-Abdel-Karim运动硬化规则,采用三种时变本构模型来描述这种时变棘轮。即统一的粘塑性模型,蠕变-塑性叠加模型和蠕变-粘塑性叠加模型。通过与相应的实验结果进行比较,讨论了这种模型描述随时间变化的棘轮的能力。结果表明,统一的粘塑性模型不能为随时间变化的棘轮提供合理的模拟,特别是对于那些具有一定峰值/谷值保持力且在973K处的棘轮而言。当蠕变是变形的主导因素时,所提出的蠕变-塑性叠加模型是合理的,但是当蠕变较弱时,它不能提供合理的描述。蠕变粘塑性叠加模型不仅在室温下而且在高温下都是合理的。

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