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Stress field in continuous fiber-reinforced composites with multiple interfacial layers

机译:具有多个界面层的连续纤维增强复合材料的应力场

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摘要

Using the Composite Cylinders Assemblage (CCA) model, a generalized algorithm for the microstress analsysi of multiply coated continous fiber-reinforced composites under axisymmetric mechanical and/or hygrothermal loading is presented. An arbitrary number (p) of fiber coatings/layers (i.e., concentric interphases between fiber and matrix) are considered. All the p-phases are assumed to be transversely isotropic with respect to their stiffness and thermal and moisture expansion coefficients. Temperature and moisture fields can be different in each phase; uniform field becomes a specific case. Some of the earlier formulations reported in the literature, which asre based on four- or five-phase CCA models, are derivable from the general algorithm presented in the paper. The formulation presented is expected to be useful especially for the analysis of metal-matrix composites where a number of reaction zones (phases) with distinctly different properties are found to exist between the coating and the matrix, or more than one type of coating is applied on the fiber.
机译:使用复合圆柱体组合(CCA)模型,提出了在轴对称机械载荷和/或湿热载荷作用下,多层连续纤维增强复合材料的微应力分析的通用算法。考虑任意数量(p)的纤维涂层/层(即,纤维和基质之间的同心中间相)。就其刚度以及热和湿膨胀系数而言,所有p相均假定为横向各向同性。每个阶段的温度和湿度场可能不同。统一场成为一个特例。文献中报道的一些早期公式基于四相或五相CCA模型,可从本文介绍的通用算法中推导。预期所提供的配方特别适用于分析金属基复合材料,其中发现涂层和基体之间存在许多性质明显不同的反应区(相),或者使用了一种以上类型的涂层在光纤上。

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