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Predicting damage and failure under thermomechanical fatigue in hot forging tools

机译:在热锻工具中的热机械疲劳下预测损伤和失效

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摘要

Finite element (FE) model is developed to examine thermomechanical fatigue behavior of a hot work tool steel. Experimental results for fatigue properties of 9Cr steel were used. An approach, employing a local ductile damage initiation and evolution model, using the hysteresis stress-strain energy concept combined with element removal, has been used to predict the failure. FE analysis of cyclic loading was based on a nonlinear kinematic hardening criterion employing the Chaboche constitutive equations. Parameters of fatigue damage are calculated based on experimental data at 300 and 620 degrees C. Using these parameters, simulation of high temperature low cycle fatigue behavior for standard specimens according to test conditions is carried out and the results of LCF simulation were in good agreement with the experimental. Then, a set of thermomechanical fatigue simulations for hot forging die was performed and fatigue crack initiation and growth in forging die are predicted.
机译:开发了有限元(FE)模型来检查热工床钢的热机械疲劳行为。 使用了9Cr钢疲劳性能的实验结果。 采用局部延展性损伤启动和进化模型的方法,使用滞后应力 - 应变能概念与元素移除结合的,已经用于预测失败。 循环载荷的Fe分析基于采用Chaboche组成型方程的非线性运动硬化标准。 疲劳损坏参数基于300和620℃的实验数据计算。使用这些参数,进行了根据测试条件的标准样品的高温低周期疲劳行为的模拟,LCF模拟的结果与 实验。 然后,进行了一组用于热锻模具的热机械疲劳模拟,预测疲劳裂纹启动和锻造模具的生长。

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