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A mechanistic approach to damage in short-fiber composites based on micromechanical and continuum damage mechanics descriptions

机译:基于微力学和连续损伤力学描述的短纤维复合材料损伤机理

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摘要

A micro-macro mechanistic approach to matrix cracking in randomly oriented short-fiber composites is developed in this paper. At the micro-scale, the virgin and reduced elastic properties of the reference aligned fiber composite are determined using micro-mechanical models [Proc. Roy Soc. Lond. A241 (1957) 376; Acta Metall. 21(1973) 571; Mech. Mater. 2 (1983) 123], and are then distributed over all possible orientations in order to compute the stiffness of the random fiber composite containing random matrix microcracks. After that the macroscopic response is obtained by means of a continuum damage mechanics formulation, which extends the thermodynamics based approach in [Comp. Sci. Technol. 46 (1993) 29] to randomly oriented short-fiber composites. Damage accumulations leading to initiation and propagation of a macroscopic crack are modeled using a vanishing element technique. The model is validated against the published experimental data and results [Comp. Sci. Technol 55 (1995)171]. Finally, its practical application is illustrated through the damage analysis of a random glass/epoxy composite plate containing a central hole and under tensile loading.
机译:本文提出了一种随机的短纤维复合材料基体开裂的微观机理。在微观尺度上,使用微机械模型[Proc.Natl.Acad.Sci.Sci.USA,87,3593]确定参考取向纤维复合材料的原始和降低的弹性。罗伊·索克(Roy Soc)。 nd A241(1957)376;金属学报。 21(1973)571;机甲母校2(1983)123],然后分布在所有可能的方向上,以计算包含随机基体微裂纹的随机纤维复合材料的刚度。此后,通过连续损伤力学公式获得宏观响应,从而扩展了[Comp。科学技术。 [J.Med.Chem.46(1993)29]提出了一种随机取向的短纤维复合材料。使用消失元素技术对导致宏观裂纹萌生和扩展的损伤累积进行建模。根据已发布的实验数据和结果验证了该模型。科学Technol 55(1995)171]。最后,通过对包含中心孔并承受拉力的无规玻璃/环氧树脂复合板的损伤分析,说明了其实际应用。

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