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首页> 外文期刊>International Journal of Engineering Science >Effective stiffness and thermal expansion coefficients of unidirectional composites with fibers surrounded by cylindrically orthotropic matrix layers
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Effective stiffness and thermal expansion coefficients of unidirectional composites with fibers surrounded by cylindrically orthotropic matrix layers

机译:圆柱形正交异性基质层包围的单向纤维复合材料的有效刚度和热膨胀系数

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摘要

An approach to predict the effective thermoeiastic properties of unidirectional composites consisting of cylindrically orthotropic fibers surrounded by layers of cylindrically orthotropic matrix is developed and applied to carbon/carbon composites. Micromechanical modeling is based on elastic solutions for basic loadcases including prescribed axial tension, transverse hydrostatic loading, axial and in-plane shear, and unconstrained thermal expansion. The composite cylinder assemblage model (Hashin. 1990) is utilized to predict axial elastic properties, transverse bulk modulus and thermal expansion coefficients of the overall composite. The effective transverse shear modulus is evaluated using a self-consistent method. The approach is illustrated by considering a representative carbon/carbon material system containing pyrolytic carbon matrix of two different texture levels.
机译:开发了一种预测由圆柱形正交异性纤维包围圆柱形正交异性基体层组成的单向复合材料有效热弹性性能的方法,并将其应用于碳/碳复合材料。微机械建模基于基本载荷工况的弹性解,包括规定的轴向张力,横向静液压载荷,轴向和平面内剪切力以及不受约束的热膨胀。复合材料圆柱体组装模型(Hashin。1990)用于预测整个复合材料的轴向弹性,横向体积模量和热膨胀系数。有效的横向剪切模量使用自洽方法进行评估。通过考虑代表性的碳/碳材料系统来说明该方法,该系统包含两种不同织构水平的热解碳基质。

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