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Ratchetting strain prediction

机译:棘轮应变预测

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摘要

A time-efficient method for predicting ratchetting strain is proposed. The ratchetting strain at any cycle is determined by finding the ratchetting rate at only a few cycles. This determination is done by first defining the trajectory of the origin of stress in the deviatoric stress space and then incorporating this moving origin into a cyclic plasticity model. It is shown that at the beginning of the loading, the starting point of this trajectory coincides with the initial stress origin and approaches the mean stress, displaying a power-law relationship with the number of loading cycles. The method of obtaining this trajectory from a standard uniaxial asymmetric cyclic loading is presented. Ratchetting rates are calculated with the help of this trajectory and through the use of a constitutive cyclic plasticity model which incorporates deviatoric stresses and back stresses that are measured with respect to this moving frame. The proposed model is used to predict the ratchetting strain of two types of steels under single- and multi-step loadings. Results obtained agree well with the available experimental measurements.
机译:提出了一种省时的预测棘轮应变的方法。通过仅在几个循环中求出比率,就可以确定任何循环中的棘轮应变。通过首先定义偏应力空间中的应力原点的轨迹,然后将该运动原点合并到循环可塑性模型中来完成此确定。结果表明,在加载开始时,该轨迹的起点与初始应力起点重合,并且接近平均应力,显示出与加载循环次数的幂律关系。提出了一种从标准单轴不对称循环载荷中获得该轨迹的方法。在此轨迹的帮助下,通过使用本构循环可塑性模型来计算棘轮速度,该模型包含相对于此移动框架测量的偏向应力和背向应力。所提出的模型用于预测两种类型钢在单步载荷和多步载荷下的棘轮应变。获得的结果与可用的实验测量结果非常吻合。

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