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Composite laminate failure analysis using multicontinuum theory

机译:基于多连续谱理论的复合材料层合板破坏分析

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摘要

Damage in a composite material typically begins at the constituent level and may, in fact, be limited to only one constituent in some situations. An accurate prediction of constituent damage at sampling points throughout a laminate provides a genesis for progressively analyzing failure of a composite structure from start to finish. Multicontinuum Theory is a micromechanics based theory and associated numerical algorithm for extracting, virtually without a time penalty, the stress and strain fields for a composites' constituents during a routine finite element analysis. A constituent stress-based failure criterion is used to construct a nonlinear progressive failure algorithm for investigating the material failure strengths of composite laminates. The proposed failure analysis methodology was used to simulate the nonlinear laminate behavior and progressive damage of selected laminates under both uniaxial and biaxial load conditions up to their ultimate strength. This effort was part of a broader project to compare the predictive capability of current composite failure criteria.
机译:复合材料的损坏通常始于成分级别,实际上在某些情况下可能仅限于一种成分。对整个层压板采样点的成分破坏的准确预测为从头到尾逐步分析复合结构的失效提供了依据。多连续谱理论是一种基于微力学的理论和相关的数值算法,可以在常规有限元分析过程中几乎无时间损失地提取复合材料成分的应力场和应变场。基于组成应力的破坏准则用于构建非线性渐进破坏算法,以研究复合材料层合板的材料破坏强度。所提出的失效分析方法用于模拟非线性层压板行为以及所选层压板在单轴和双轴载荷条件下直至其极限强度的渐进式损伤。这项工作是更广泛的项目的一部分,该项目用于比较当前复合材料失效标准的预测能力。

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