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A study of cyclic plasticity and viscoplasticity in a new nickel-based super alloy using unified constitutive equations. Part Ⅱ: Simulation of cyclic stress relaxation

机译:使用统一的本构方程研究新型镍基超级合金的循环可塑性和粘塑性。第二部分:循环应力松弛模拟

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Cyclic stress relaxation behaviour has been investigated during strain hold periods under dwell loading conditions. A dynamic recovery term was introduced in the non-linear kinematic hardening rule and incorporated into the unified Chab-oche model. The material parameters associated with this new term were determined and optimisation procedures were followed to obtain a new set of optimised parameters. The modified Chaboche model was then used in the simulation of creep and cyclic stress relaxation of a new nickel-based alloy, and the simulations were compared with the experimental results. Good agreement has been achieved between the numerical solutions and the experimental results. Correlation of the material parameters was also examined to evaluate the efficiency of the new model formulation.
机译:已经在保压载荷条件下的应变保持期间研究了循环应力松弛行为。在非线性运动硬化规则中引入了动态恢复项,并将其纳入统一的Chab-oche模型。确定与该新术语相关的材料参数,并遵循优化程序以获得一组新的优化参数。然后将改进的Chaboche模型用于新型镍基合金的蠕变和循环应力松弛模拟,并将模拟结果与实验结果进行了比较。数值解和实验结果之间已经取得了很好的一致性。还检查了材料参数的相关性,以评估新模型配方的效率。

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