首页> 外文会议>ASME Pressure Vessels and Piping Conference >APPLICABILITY OF NONLINEAR KINEMATIC HARDENING MODELS TO LOW CYCLE FATIGUE SIMULATION OF C(T) SPECIMEN
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APPLICABILITY OF NONLINEAR KINEMATIC HARDENING MODELS TO LOW CYCLE FATIGUE SIMULATION OF C(T) SPECIMEN

机译:非线性运动硬化模型对C(T)标本低循环疲劳模拟的应用

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摘要

To perform low cycle fatigue analysis on nuclear structural materials under cyclic loading, cyclic hardening rules should be determined. In this study, the determination of linear and nonlinear kinematic hardening model parameters based on limited material test data is proposed. Chaboche model parameters are determined from hysteresis loops for the purpose of comparison. Simulation of cyclic C(T) test is performed using the hardening models. In cyclic C(T) test, SA508 Gr.1a low alloy steel and SA312 TP316L stainless steel were taken and incremental loading sequence was adopted. In the loading sequence, displacement control was used for loading steps and load control was applied for unloading steps to maintain constant load ratio. A constant displacement increment was applied after each cycle. The simulation results using A&F model and Chaboche model are compared to verify the applicability of A&F model.
机译:为了在循环加载下对核结构材料进行低循环疲劳分析,应确定循环硬化规则。在该研究中,提出了基于有限材料测试数据的线性和非线性运动硬化模型参数的确定。 Chaboche模型参数由滞后环确定以进行比较。使用硬化模型进行循环C(T)测试的仿真。在循环C(t)测试中,采用SA508 GR.1A低合金钢和SA312 TP316L不锈钢,采用增量加载序列。在装载序列中,使用位移控制用于加载步骤,并施加负载控制以卸载步骤以保持恒定负载比。在每个周期之后应用恒定的位移增量。使用A&F型号和Chaboche模型进行仿真结果,以验证A&F型号的适用性。

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