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A plastic shakedown constitutive curve based on uniaxial ratcheting behavior of 304 stainless steel at room temperature

机译:基于室温下304不锈钢单轴棘轮行为的塑性减振本构曲线

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摘要

On the basis of the Bauschinger effect, a relationship between the elastic space defined in this study and the accumulated plastic strain is measured in uniaxial ratcheting tests of 304 stainless steel at room temperature. According to this relationship, a new model of uniaxial ratcheting is established and used to simulate uniaxial ratcheting behavior. The results of simulation agree well with the experimental results. These results demonstrate that the relationship between the elastic space and the accumulated plastic strain plays an important role in uniaxial ratcheting simulation. Furthermore, by taking into account the interaction of ratcheting and viscoplasticity, the relationships among elastic space, accumulated plastic strain and loading cases are discussed. It can be seen that, when the stress ratio R of valley stress versus peak stress is not less than zero, the accumulated plastic strain is a function of the peak stress. So, a constitutive curve is obtained to describe the stable states of plastic shakedown for 304 stainless steel material under the stress ratio R≥0. It can be used to determine the accumulated plastic strain of engineering structures under cyclic loading only by an elastic-plastic analysis.
机译:基于包辛格效应,在室温下对304不锈钢进行单轴棘轮测试时,测量了本研究中定义的弹性空间与累积塑性应变之间的关系。根据这种关系,建立了一种新的单轴棘轮模型,并将其用于模拟单轴棘轮行为。仿真结果与实验结果吻合良好。这些结果表明,弹性空间与累积塑性应变之间的关系在单轴棘轮仿真中起着重要作用。此外,通过考虑棘轮和粘塑性的相互作用,讨论了弹性空间,累积塑性应变和荷载工况之间的关系。可以看出,当谷底应力与峰值应力的应力比R不小于零时,累积的塑性应变是峰值应力的函数。因此,获得了一条本构曲线来描述应力比R≥0时304不锈钢材料塑性减振的稳定状态。只能通过弹塑性分析来确定工程结构在循环载荷下的累积塑性应变。

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