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首页> 外文期刊>International Journal of Plasticity >Localized necking analysis by the subloading surface model with tangential-strain rate and anisotropy
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Localized necking analysis by the subloading surface model with tangential-strain rate and anisotropy

机译:通过切向应变率和各向异性的子加载表面模型进行局部颈缩分析

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A rational approach to the localized necking problem was given by Storen and Rice [J. Mech. Phys. Solids 23 (1975) 421] but this approach is limited to the description of monotonic loading behavior near a proportional loading of the isotropic, rigid-plastic materials with von Mises yield surface. In this article it is extended so as to be applicable to the arbitrary loading behavior of elastoplastic materials with an arbitrary yield surface by introducing the subloading surface model with the tangential-stress rate effect [Met. Mater. 4 (1998) 652; Int. J. Plasticity 17 (2001) 117]. The localized necking condition under biaxial stretching of a uniform and homogeneous thin sheet subjected to biaxial stretching in the plane stress state is formulated in such a way that elastic deformation and compressibility are allowed. Based on this condition, the localized necking for metals is analyzed showing the forming limit diagrams (FLDs). It becomes clear that not only the tangential-strain rate but also the inherent/induced anisotropy due to the kinematic hardening intensely influence the onset of localized necking. (C) 2003 Elsevier Ltd. All rights reserved.
机译:Storen和Rice提出了解决局部颈缩问题的合理方法。机甲。物理[Solids 23(1975)421],但这种方法仅限于描述各向同性,具有von Mises屈服面的刚性塑料材料按比例加载时的单调加载行为。在本文中,通过引入具有切向应力率效应的子加载表面模型,将其扩展为适用于具有任意屈服面的弹塑性材料的任意加载行为。母校4(1998)652;诠释J.Plasticity 17(2001)117]。以允许弹性变形和压缩性的方式,对在平面应力状态下进行了双轴拉伸的均质且均质的薄片的双轴拉伸下的局部颈缩条件进行了规定。基于此条件,分析了金属的局部缩颈,显示了成形极限图(FLD)。显然,不仅切线应变率而且由于运动学硬化引起的固有/诱发各向异性强烈地影响局部颈缩的发作。 (C)2003 Elsevier Ltd.保留所有权利。

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