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首页> 外文期刊>International Journal of Solids and Structures >On the consistency of nested surfaces models and their kinematic hardening rules
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On the consistency of nested surfaces models and their kinematic hardening rules

机译:嵌套曲面模型的一致性及其运动硬化规则

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In this paper we briefly address the consistency of formulations for nested surfaces plasticity and their kinematic hardening translation rules. Some requirements for these formulations are then given. It is shown and discussed that multilayer plasticity based on nested yield surfaces present some inconveniences when modelling multiaxial cyclic loading. On the other hand, the use of hardening surfaces, instead of yield surfaces solves the problem partially. It is also shown that multilayer plasticity based on the Mroz kinematic rule yields clearly different multiaxial predictions when using the same uniaxial bilinear curve and different number of surfaces, which is a priori inconsistent since the same monotonic stress-strain curve should not result into a clearly different multiaxial behavior simply because of the discretization employed by the user. It is demonstrated that, in contrast with the Mroz translation rule, multilayer plasticity using the Prager translation rule results in the same prediction regardless of the number of surfaces in which the hardening part of the bilinear curve is discretized. This rule is also compliant with the principle of maximum dissipation. It also allows for a vanishing elastic region without falling into theoretical or numerical difficulties. Hence, it should not be discarded when developing advanced models. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在本文中,我们简要介绍了嵌套曲面可塑性及其运动学硬化转换规则的一致性。然后给出了这些配方的一些要求。结果表明并讨论了当建模多轴循环载荷时,基于嵌套屈服面的多层塑性会带来一些不便。另一方面,使用硬化表面代替屈服表面可以部分解决该问题。还显示,当使用相同的单轴双线性曲线和不同数量的表面时,基于Mroz运动学规律的多层可塑性会产生明显不同的多轴预测,这是先验不一致的,因为相同的单调应力-应变曲线不应导致明显的变化。仅仅由于用户采用离散化而导致不同的多轴行为。结果表明,与Mroz平移规则相反,使用Prager平移规则的多层可塑性导致相同的预测,而与离散双线性曲线的硬化部分的表面数量无关。该规则也符合最大耗散原理。它还允许消失的弹性区域而不会陷入理论或数值上的困难。因此,在开发高级模型时不应将其丢弃。 (C)2007 Elsevier Ltd.保留所有权利。

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