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Effective plastic properties of laminates made of isotropic elastic plastic materials

机译:各向同性弹性塑料材料制成的层压板的有效塑性

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The effective elastic behavior of laminates is well understood. In this contribution, we make use of the fact that the elastic homogenization can be extended relatively easy to the plastic case (He and Feng, 2012), which is interesting for bilayer metallic structures. With the aid of stress concentration tensors, the effective yield limit is calculated, and its properties are examined. It turns out to be anisotropic, pressure-dependent, non-smooth, and evolves with the plastic deformation. Using the constitutive equations of von Mises elastic plastic materials, the effective plastic flow behavior is obtained as a set of coupled nonlinear ordinary differential equations with algebraic conditions. A general solution can hardly be given, but it can be integrated numerically. Further, it is possible to examine some properties of its solution without explicitly stating it, such as its poles. The latter allow to extract closed form-expressions for the ultimate loading stress in monotonic stress-driven tests. All analytical results are compared to representative volume element simulations, and found to match very well. (C) 2016 Elsevier Ltd. All rights reserved.
机译:层压板的有效弹性性能是众所周知的。在这一贡献中,我们利用了一个事实,即弹性均质化可以相对容易地扩展到塑料外壳上(He and Feng,2012),这对于双层金属结构是很有趣的。借助应力集中张量,计算出有效屈服极限,并检查其性能。事实证明它是各向异性的,压力相关的,不光滑的,并且随着塑性变形而演变。使用冯·米塞斯(von Mises)弹性塑性材料的本构方程,可以得到有效的塑性流动行为,是一组带有代数条件的耦合非线性常微分方程。很难给出一般的解决方案,但是可以将其数字化。此外,可以检查其解决方案的某些属性而无需明确说明,例如其极点。后者允许提取封闭形式的表达式,以在单调应力驱动的测试中获得最终的加载应力。将所有分析结果与代表性的体积元素模拟进行比较,发现它们非常匹配。 (C)2016 Elsevier Ltd.保留所有权利。

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