首页> 外文期刊>Journal of Materials Science >DETERMINATION OF FRACTURE STRESS AND STRAIN OF HIGHLY ORIENTED SHORT FIBRE-REINFORCED COMPOSITES USING A FRACTURE MECHANICS-BASED ITERATIVE FINITE-ELEMENT METHOD
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DETERMINATION OF FRACTURE STRESS AND STRAIN OF HIGHLY ORIENTED SHORT FIBRE-REINFORCED COMPOSITES USING A FRACTURE MECHANICS-BASED ITERATIVE FINITE-ELEMENT METHOD

机译:基于断裂力学的迭代有限元法确定高取向短纤维增强复合材料的断裂应力和应变

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摘要

For a tensile test specimen made of a short fibre-reinforced composite with the fibres oriented in the direction of force, a model was developed to describe the onset and propagation of microcracks, which finally lead to macroscopic failure of the specimen. The crack propagation theory used is based on a standard fracture mechanics method and was applied to the microstructure of the specimen by the finite element method. The results appear qualitatively correct. The micromechanical method applied gives a deeper insight into the fracture processes within short fibre-reinforced composites. [References: 16]
机译:对于由短纤维增强复合材料制成的拉伸试样,其纤维沿力的方向取向,开发了一个模型来描述微裂纹的发生和传播,最终导致了宏观破坏。所使用的裂纹扩展理论基于标准的断裂力学方法,并通过有限元方法应用于样品的微观结构。结果在质上看是正确的。所应用的微机械方法可以更深入地了解短纤维增强复合材料的断裂过程。 [参考:16]

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