An efficient model for diffuse to localized necking transition in rate-dependent bifurcation analysis of metallic sheets
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An efficient model for diffuse to localized necking transition in rate-dependent bifurcation analysis of metallic sheets

机译:一种有效的模型,用于衍射到金属板率依赖性分岔分析中的局部颈缩转换

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Highlights?Plastic instability is modeled by vertex criterion coupled with angle-dependent yielding.?Stress triaxiality is investigated on the localization in bifurcation analysis.?Loading conditions are considered into diffuse by modified maximum force criterion.?A delicate bridge between the diffusion and localized models is made.?Anisotropy effect is studied by application of a quadratic Hill's criteria.AbstractA plastic instability model is extended to predict evolution of a bounded deformation in necking phenomenon. There are several studies to predict the plastic instability such as the vertex model proposed by St?ren and Rice, which considers strain and stress rate discontinuities in the necking band. Here, the model is established on theJ2deformation theory of classical plasticity. Effect of stress triaxiality is investigated on the localization in bifurcation analysis. Also, a modified maximum force criterion is applied to predict diffuse necking considering loading conditions. Although considering the effect of strain rate hardening plays an important role to give accurate results, usually imposing it leads to emerging relatively the main complex constitutive equations. Therefore, a delicate bridge between the diffuse and localized models is made using the maximum force assumption to overcome on the complexity of the problem. Also, by investigating the strain rate behavior on the plastic instability, the forming limit diagrams are obtained illustrating more accurate results than other existing models. The anisotropy effect is studied by application of a quadratic Hill's criteria. The necking band angle will be investigated per different conditions through extending the vertex model coupled with the angle-dependent yield criterion.Graphical abstractDisplay Omitted]]>
机译:<![cdata [ 突出显示 塑料不稳定性由顶点标准与角度依赖的屈服。 < CE:列表项ID =“celistItem0002”> 在分叉分析中的定位上调查了应力三轴性。< / ce:para> 加载条件被修改的最大力标准漫反射。 制作了扩散和局部模型之间的精致桥。 通过应用二次山的标准研究了各向异性效果。 抽象 塑料不稳定模型延长以预测颈缩现象中有界变形的演变。存在几项研究以预测塑料不稳定性,例如ST?仁和水稻提出的顶点模型,其认为颈带中的应变和应力速率不连续性。这里,在 j 2 古典可塑性理论的情况下建立了模型。对分叉分析中的定位研究了应激三轴性的影响。而且,考虑加载条件,应用修改的最大力标准以预测漫射缩颈。虽然考虑到应变速率硬化的效果起着重要作用以提供准确的结果,但通常施加它导致相对络合的构成方程。因此,使用最大力假设来克服问题的复杂性的漫射和局部模型之间的精致桥。此外,通过研究塑料不稳定性的应变速率行为,获得形成限制图,示出了比其他现有模型更精确的结果。通过应用二次山的标准研究了各向异性效应。通过延伸与角度依赖性产量标准耦合的顶点模型来研究颈带角度。 图形抽象 显示省略 ]]>

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