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首页> 外文期刊>Mechanics research communications >The Chaboche hardening rule: A re-evaluation of calibration procedures and a modified rule with an evolving material parameter
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The Chaboche hardening rule: A re-evaluation of calibration procedures and a modified rule with an evolving material parameter

机译:Chaboche强化规则:校准程序的重新评估和具有不断变化的材料参数的修改后的规则

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This study first re-examines key existing calibration procedures for the Chaboche decomposed nonlinear kinematic hardening rule. Special attention has been paid to the extent to which the predictions of calibrated models represent the physics of phenomena observed in strain- and stress-controlled cyclic tests. It has been shown and discussed that newer methods suffer from some weaknesses and may yield nonphysical results. Second, with the aim of improving the accuracy of its ratcheting strain predictions in unsymmetric stress-controlled tests, a modified calibration procedure and a new Chaboche hardening rule with an evolving material parameter is introduced. The former improves the accuracy of predicted ratcheting strains at the initial cycles, while the latter is responsible for the better agreement of the results at the higher cycles. The new model assumes there exists a linear relationship between one of the coefficient of the model and its corresponding effective/equivalent backstress. Finally, the predictions of the new model and those of the original Chaboche rule are compared with the available experimental results from the literature. It has been shown that, regardless of the level of mean stress of unsymmetric stress-controlled test, the ratcheting rates of the higher cycles are satisfactorily predicted by the proposed modified model. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究首先重新检查了Chaboche分解的非线性运动硬化规则的现有关键校准程序。校准模型的预测在一定程度上代表了在应变和应力控制的循环测试中观察到的现象的物理特性,对此给予了特别的关注。已经显示并讨论了较新的方法存在一些缺点,并可能产生非物理结果。其次,为了提高在非对称应力控制试验中棘轮应变预测的准确性,引入了一种改进的校准程序和一种随着材料参数不断变化的新的Chaboche硬化规则。前者提高了初始循环时预测棘轮应变的准确性,而后者则有助于在更高的循环时更好地吻合结果。新模型假定模型的系数之一与其对应的有效/等效背应力之间存在线性关系。最后,将新模型和原始Chaboche规则的预测与文献中可获得的实验结果进行比较。结果表明,无论不对称应力控制试验的平均应力水平如何,改进的模型都能令人满意地预测较高循环的棘轮速率。 (C)2015 Elsevier Ltd.保留所有权利。

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