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Theoretical and Numerical Comparison of Limit Point Bifurcation and Maximum Force Criteria. Application to the Prediction of Diffuse Necking

机译:极限点分叉和最大力准则的理论和数值比较。在弥散颈缩预测中的应用

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A large number of criteria has been developed to predict material instabilities, but their choice is limited by the lack of existing comparison of their theoretical basis and application domains. To overcome this limitation, a theoretical and numerical comparison of two major models used to predict diffuse necking is present in this paper. Limit Point Bifurcation criterion is first introduced. An original formulation of the Maximum Force Criterion (MFC), taking into account the effects of damage and isotropic and kinematic hardenings, is then proposed. Strong connections are shown between them by comparing their theoretical basis. Numerical Forming Limit Diagrams at diffuse necking obtained with these criteria for different metallic materials are given. They illustrate the theoretical link and similar predictions are shown for both models.
机译:已经开发了许多标准来预测材料的不稳定性,但是由于缺乏对它们的理论基础和应用领域的现有比较,它们的选择受到了限制。为了克服这一限制,本文提出了用于预测弥散颈缩的两个主要模型的理论和数值比较。首先介绍了极限点分叉准则。然后提出了最大力准则(MFC)的原始公式,其中考虑了损伤以及各向同性和运动学硬化的影响。通过比较它们的理论基础,它们之间显示出很强的联系。给出了使用这些标准针对不同金属材料获得的扩散颈缩处的数值成形极限图。他们说明了理论联系,并显示了两个模型的相似预测。

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