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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Modeling of Interphases in Fiber-Relinforced Composites Under Transverse Loading Using the Boundary Element Method
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Modeling of Interphases in Fiber-Relinforced Composites Under Transverse Loading Using the Boundary Element Method

机译:横向约束下纤维增强复合材料的相间建模的边界元方法

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摘要

In this paper, interphases in unidirectional fiber-reinforced composites under transverse loading are modeled by an advanced boundary element method based on the elasticity theory. The interphases are regarded as elastic layers between the fiber and matrix, as opposed to the spring-like models in the boundary element method literature. Both cylinder and square unit cell models of the fiber-interphase-matrix systems are considered. The effects of varying the modulus and thickness (including nonuniform thickness) of the interphases with different fiber volume fractions are investigated. Numerical results demonstrate that the developed boundary element method is very accurate and efficient in determining interface stresses and effective elastic moduli of fiber-reinforced composites with the presence of interphases of arbitrarily small thickness. Results also show that the interphase properties have significant effect on the micromechanical behaviors of the fiber-reinforced composites when the fiber volume fractions are large.
机译:本文基于弹性理论,采用先进的边界元方法对单向纤维增强复合材料在横向载荷作用下的相间进行了建模。与边界元方法文献中的类似弹簧的模型相反,相间被视为纤维和基质之间的弹性层。同时考虑了纤维相间矩阵系统的圆柱单元模型和方形单元模型。研究了不同纤维体积分数下相变模量和厚度(包括不均匀厚度)的影响。数值结果表明,所开发的边界元方法在确定任意小厚度相间存在的情况下,在确定纤维增强复合材料的界面应力和有效弹性模量方面非常准确有效。结果还表明,当纤维体积分数较大时,相间性质对纤维增强复合材料的微机械性能有重要影响。

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