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DAMAGE IN SHORT-FIBER COMPOSITES: FROM THE MICROSCALE TO THE CONTINUUM SOLID

机译:短纤维复合材料的损害:从微米级到连续固体

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摘要

This paper proposes a multiscale mechanistic approach to damage in short-fiber polymer composites (SFPC). At the microscale, the damage mechanisms are analyzed using micromechanical modeling, and the associated damage variables are defined. The stiffness reduction law dependent on these variables is then established. The macroscopic response is determined using thermodynamics of continuous media, continuum damage mechanics and finite element analysis. Final failure resulting from saturation of matrix microcracks, fiber/matrix debonding, fiber pull-out and breakage is modeled by a vanishing element technique. The model was validated using the experimental data and results from literature, as well as those obtained from a random glass/vinyl ester system.
机译:本文提出了一种对短纤维聚合物复合材料(SFPC)进行损伤的多尺度力学方法。在微观尺度上,使用微机械模型分析损伤机理,并定义相关的损伤变量。然后建立依赖于这些变量的刚度减小定律。宏观响应是使用连续介质的热力学,连续介质损伤力学和有限元分析确定的。通过消失元素技术对由于基质微裂纹饱和,纤维/基质剥离,纤维拉出和断裂而导致的最终破坏进行建模。使用实验数据和来自文献的结果以及从无规玻璃/乙烯基酯体系获得的结果验证了模型。

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