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DAMAGE-COUPLED CONSTITUTIVE MODEL FOR UNIAXIALRATCHETING AND FATIGUE FAILURE OF 304 STAINLESS STEEL

机译:304不锈钢疲劳耦合组成型模型及疲劳失效的304不锈钢

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Based on the existed experimental results of 304 stainless steel, the evolution of fatigue damage during the stress-controlled cyclic loading was discussed first. Then, a damage-coupled visco-plastic cyclic constitutive model was proposed in the framework of unified visco-plasticity and continuum damage mechanics to simulate the whole-life ratcheting and predict the fatigue failure life of the material presented during the uniaxial stress-controlled cyclic loading with non-zero mean stress. In the proposed model, the whole life ratcheting was described by employing a non-linear kinematic hardening rule, i.e., the Armstrong-Frederick model combined with the Ohno-Wang model I, and considering the effect of fatigue damage. The damage threshold was employed to determine the failure life of the material. The simulated whole-life ratcheting and predicted failure lives are in a fairly good agreement with the experimental ones of 304 stainless steel.
机译:基于304不锈钢的实验结果,首先讨论了应激控制循环载荷期间疲劳损伤的演变。然后,在统一的粘性塑性和连续损伤力学框架中提出了一种损坏的粘液型循环本构型模型,以模拟整个寿命棘轮,并预测在单轴应力控制循环期间所呈现的材料的疲劳失效寿命装载非零平均压力。在所提出的模型中,通过采用非线性运动硬化规则,即Armstrong-Frederick模型与Ohno-Wang模型I结合,并考虑到疲劳损伤的影响来描述整个生命棘轮。使用损伤阈值来确定材料的失效寿命。模拟的整个寿命棘轮和预测的失败生命与304个不锈钢中的实验性相当吻合相当良好。

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