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An affine formulation for the self-consistent modeling of elasto-viscoplastic heterogeneous materials based on the translated field method

机译:基于平移场法的弹塑性粘塑性非均质材料自洽建模的仿射公式

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摘要

The modeling of heterogeneous materials with an elasto-viscoplastic behavior is generally complex because of the differential nature of the local constitutive law. Indeed, the resolution of the heterogeneous problem involves space-time couplings which are generally difficult to estimate. In the present paper, a new homogenization model based on an affine linearization of the viscoplastic flow rule is proposed. First, the heterogeneous problem is written in the form of an integral equation. The purely thermoelastic and purely viscoplastic heterogeneous problems are solved independently using the self-consistent approximation. Using translated field techniques, the solutions of the above problems are combined to obtain the final self-consistent formulation. Then, some applications concerning two-phase fibre-reinforced composites and polycrystalline materials are presented. When compared to the reference solutions obtained from a FFT spectral method, a good description of the overall response of heterogeneous materials is obtained with the proposed model even when the viscoplastic flow rule is highly non-linear. Thanks to this approach, which is entirely formulated in the real-time space, the present model can be used for studying the response of heterogeneous materials submitted to complex thermomechanical loading paths with a good numerical efficiency.
机译:由于局部本构定律的差异性,具有弹黏塑性行为的异质材料的建模通常很复杂。实际上,解决异构问题涉及时空耦合,通常难以估计。本文提出了一种基于粘塑性流规则的仿射线性化的均质化模型。首先,以积分方程的形式写出非均质问题。使用自洽近似可独立解决纯热弹性和纯粘塑性的异质问题。使用翻译的现场技术,可以将上述问题的解决方案组合起来,以获得最终的自洽公式。然后,提出了有关两相纤维增强复合材料和多晶材料的一些应用。当与从FFT光谱法获得的参考溶液进行比较时,即使粘塑性流动规则是高度非线性的,也可以通过提出的模型很好地描述异质材料的整体响应。由于这种方法是完全在实时空间中制定的,因此本模型可用于研究具有良好数值效率的异质材料对复杂热机械加载路径的响应。

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