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Particle swarm optimization procedure in determining parameters in Chaboche kinematic hardening model to assess ratcheting under uniaxial and biaxial loading cycles

机译:确定Chaboche运动硬化模型参数以评估单轴和双轴加载循环下棘轮的粒子群优化程序

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摘要

As parameters in Chaboche model are difficult to be determined from experimental data, a single objective particle swarm optimization procedure was employed to obtain them. Hysteresis loop and uniaxial and biaxial ratcheting simulations were conducted to validate the determined models. Chaboche models determined by particle swarm optimization give more accurate simulation of ratcheting compared with the model determined by trial and error method. Chaboche models containing different backstress components were studied. Models determined considering uniaxial ratcheting can only predict uniaxial ratcheting precisely, while giving very bad simulation of biaxial ratcheting. The linear hardening rule in the N3L1 model clearly decreases the rate of the accumulation of ratcheting strain, and the N3L1 model gives the best simulations. For biaxial ratcheting, the fourth backstress component can decrease the rate of the accumulation apparently, while it has a little influence on prediction of uniaxial ratcheting.
机译:由于很难从实验数据中确定Chaboche模型中的参数,因此采用单目标粒子群优化程序来获取它们。进行磁滞回线以及单轴和双轴棘轮仿真以验证所确定的模型。与通过试错法确定的模型相比,通过粒子群优化确定的Chaboche模型可以更精确地模拟棘轮运动。研究了包含不同背应力成分的Chaboche模型。考虑单轴棘轮而确定的模型只能精确预测单轴棘轮,而对双轴棘轮的模拟却非常糟糕。 N3L1模型中的线性硬化规则明显降低了棘轮应变的累积速率,并且N3L1模型提供了最佳模拟。对于双轴棘轮,第四背应力分量可以明显降低累积速率,而对单轴棘轮的预测影响很小。

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