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A homogenization method for ductile-brittle composite laminates at large deformations

机译:一种大变形韧性 - 脆性复合材料层合板的均匀化方法

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摘要

This paper presents a high fidelity homogenization method for periodically layered composite structures that accounts for plasticity in the matrix material and quasi-brittle damage in the reinforcing layers, combined with strong geometrical nonlinearities. A set of deliberately chosen internal kinematic variables results in a rigorous representation of the kinematics of the two constituents, which in turn allows for complex constitutive laws per constituent to be employed directly in the formulation. The model accounts for hyper-elastoplastic behavior in the matrix phase and hyper-elastic behavior in the reinforcement as well as for the bending stiffness of the reinforcement layers. Additionally to previously proposed models, the present method includes Lemaitre type damage for the reinforcement, making it applicable to a wider range of engineering applications. The capability of the proposed method in representing the combined effect of plasticity, damage and buckling at microlevel within a homogenized setting is demonstrated by means of direct comparisons to a reference discrete model.
机译:本文提出了一种用于周期性分层复合结构的高保真度均化方法,该方法考虑了基体材料的可塑性和增强层的准脆性损伤,并结合了强大的几何非线性。一组故意选择的内部运动学变量导致对两种成分的运动学进行了严格的表示,从而允许将每种成分的复杂本构定律直接用于配方中。该模型考虑了基体相中的超弹塑性行为和增强物中的超弹行为以及增强层的弯曲刚度。除了先前提出的模型外,本方法还包括用于加固的Lemaitre型损坏,使其可用于更广泛的工程应用。通过与参考离散模型的直接比较,证明了该方法在均质化设置内表示可塑性,损伤和屈曲的组合效应的能力。

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