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Evaluation of cyclic plasticity models in ratcheting simulation of straight pipes under cyclic bending and steady internal pressure

机译:循环弯曲和稳定内压下直管棘轮模拟中循环塑性模型的评估

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This paper evaluates seven cyclic plasticity models for structural ratcheting response simulations. The models evaluated are bilinear (Prager), multilinear (Besseling), Chaboche, Ohno-Wang, Abdel Karim-Ohno, modified Chaboche (Bari and Hassan) and modified Ohno-Wang (Chen and Jiao). The first three models are already available in the ANSYS finite element package, whereas the last four were implemented into ANSYS for this study. Experimental responses of straight steel pipes under cyclic bending with symmetric end rotation history and steady internal pressure were recorded for the model evaluation study. It is demonstrated that when the model parameters are determined from the material response data, none of the models evaluated perform satisfactorily in simulating the straight pipe diameter change and circumferential strain ratcheting responses. A detailed parameter sensitivity Study with the modified Chaboche model was conducted to identify the parameters that influence the ratcheting simulations and to determine the ranges of the parameter values over which a genetic algorithm can search for refinement of these values. The refined parameter values improved the simulations of straight pipe ratcheting responses, but the simulations still are not acceptable. Further, improvement in cyclic plasticity modeling and incorporation of structural features, like residual stresses and anisotropy of materials in the analysis will be essential for advancement of low-cycle fatigue response Simulations of structures. (C) 2008 Elsevier Ltd. All rights reserved.
机译:本文评估了用于结构棘轮响应模拟的七个循环可塑性模型。评估的模型是双线性(Prager),多线性(Besseling),Chaboche,Ohno-Wang,Abdel Karim-Ohno,修改后的Chaboche(Bari和Hassan)和修改过的Ohno-Wang(Chen和Jiao)。前三个模型已在ANSYS有限元软件包中提供,而后四个模型已在本研究中实现到ANSYS中。记录直管在周期性弯曲下具有对称的端部旋转历史和稳定的内部压力的实验响应,以进行模型评估研究。结果表明,当根据材料响应数据确定模型参数时,在模拟直管直径变化和周向应变棘轮响应方面,所评估的模型均无法令人满意地发挥作用。使用修改后的Chaboche模型进行了详细的参数敏感性研究,以识别影响棘轮模拟的参数,并确定参数值的范围,遗传算法可以在这些范围内搜索这些值的细化。改进的参数值改善了直管棘轮响应的仿真,但是仿真仍然不可接受。此外,循环塑性建模的改进以及结构特征(如材料中的残余应力和各向异性)的合并对于分析低周疲劳响应仿真的发展至关重要。 (C)2008 Elsevier Ltd.保留所有权利。

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