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An evolving non-associated Hill48 plasticity model accounting for anisotropic hardening and r-value evolution and its application to forming limit prediction

机译:一种不断发展的无相关山地48可塑性模型,用于各向异性硬化和R值进化及其在形成极限预测的应用

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摘要

Experimental and numerical investigations on the characterisation and prediction of cold formability of a ferritic steel sheet were performed in this study. Tensile tests and Nakajima tests were conducted for the plasticity characterisation and the forming limit diagram determination, respectively. For the plasticity behaviour description, an evolving non-associated Hill48 anisotropic plasticity model was formulated to accurately characterise the anisotropy evolution under monotonic loading, including anisotropic hardening as well as the r-value evolution. The detailed model parameter calibration procedure was also demonstrated. Eventually the model was applied to the forming limits prediction in conjunction with the modified maximum force criterion. A systematic and detailed study was performed addressing the impacts of the evolving and non-associated characteristics of the model formulation on the forming limits prediction by comparing the proposed model with the classical ones. Both the plasticity model and its application to the formability prediction were validated by the experimental results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究进行了对铁素体钢板冷成形性的表征和预测的实验和数值研究。为塑性表征和成形限制图进行了拉伸试验和Nakajima测试。对于可塑性表明,配制了一种不相关的山脉48各向异性塑性模型,以精确地表征单调负载下的各向异性演化,包括各向异性硬化以及r值进化。还证明了详细的模型参数校准程序。最终将模型与改进的最大力标准一起应用于成形限制预测。通过将所提出的模型与典型形式进行比较来执行系统和详细的研究通过将所提出的模型进行比较,解决模型配方对成形限制预测的不相关特征的影响。通过实验结果验证了可塑性模型及其在可成形性预测中的应用。 (c)2017 Elsevier Ltd.保留所有权利。

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