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Damage initiation in unidirectional fiber composites with different degrees of nonuniform fiber distribution

机译:具有不同程度不均匀纤维分布的单向纤维复合材料的损伤引发

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This paper reports a study of the initiation of the first failure event in unidirectional composites subjected to transverse tension. Two energy based point failure criteria critical dilatational energy density and critical distortional energy density are considered. The manufacturing induced disorder in the fiber distribution in the composite cross section is described in terms of the degree of nonuniformity, which is quantified and for which an algorithm is developed. The nonuniformity is captured in a representative volume element (RVE) whose minimum size is determined based on statistics of nearest fiber distance distribution. Several realizations of the RVE for three fiber volume fractions and three degrees of nonuniformity are analyzed using a finite element model. A parametric study of the effect of matrix/fiber stiffness ratio on the damage initiation is also conducted. Significant effects of the fiber distribution nonuniformity on the strain to onset of damage are found. Published by Elsevier Ltd.
机译:本文报道了单向复合材料承受横向拉力时首次破坏事件的启动的研究。考虑了两个基于能量的点破坏准则:临界膨胀能密度和临界变形能密度。根据不均匀程度描述了复合截面中纤维分布中制造引起的无序性,对其进行了量化并为此开发了算法。不均匀性被捕获在代表性体积元素(RVE)中,其最小尺寸是根据最近的纤维距离分布的统计信息确定的。使用有限元模型分析了三个纤维体积分数和三个不均匀度的RVE的几种实现。还对基质/纤维刚度比对损伤引发的影响进行了参数研究。发现纤维分布不均匀对应变产生破坏的重要影响。由Elsevier Ltd.发布

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