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Uniaxial and biaxial ratchetting in piping materials-experiments and analysis

机译:管道材料中的单轴和双轴拉差试验-实验与分析

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摘要

The performance of the Chaboche kinematic hardening model has been evaluated in this paper to predict the ratchetting responses for a broad set of uniaxial and biaxial loading histories. The investigations have been performed with reference to both uniaxial and biaxial experimental data, viz. (a) strain and stress controlled uniaxial tests on tensile specimens; (b) biaxial tests on straight pipes with constant internal pressure and cyclic bending load; and (c) a shake table test on elbow. The parameters of the Chaboche model have been calculated from the uniaxial strain controlled stable hysteresis loop. Amongst the various parameters in the Chaboche model, it has been found that the selection of the value of γ3 plays a crucial role in achieving better simulation. The Chaboche model was observed to predict complete shakedown for γ3=0. On the other hand, the model closely simulated the experimental results for γ3=9. The same parameters have been used to analyze the biaxial loading condition. Ratchetting simulation studies by the Chaboche model have resulted in reasonably good agreement with experiments.
机译:Chaboche运动硬化模型的性能已在本文中进行了评估,以预测广泛的单轴和双轴载荷历史中的棘轮响应。已经参考单轴和双轴实验数据进行了研究。 (a)在拉伸试样上进行应变和应力控制的单轴试验; (b)在具有恒定内部压力和周期性弯曲载荷的直管上进行双轴试验; (c)肘部的振动台测试。 Chaboche模型的参数是根据单轴应变控制的稳定磁滞回线计算得出的。在Chaboche模型的各种参数中,已发现γ3值的选择对于实现更好的仿真起着至关重要的作用。观察到的Chaboche模型可预测γ3= 0的完全振动。另一方面,该模型紧密模拟了γ3= 9的实验结果。相同的参数已用于分析双轴加载条件。 Chaboche模型进行的抢劫模拟研究已与实验相当吻合。

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