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首页> 外文期刊>Journal of Materials Science >A new model for the transverse modulus of unidirectional fiber composites
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A new model for the transverse modulus of unidirectional fiber composites

机译:单向纤维复合材料横向模量的新模型

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摘要

In this paper a new micromechanical model for predicting the transverse modulus of unidirectional continuous and discontinuous fiber composites is proposed. This model is based on modeling a composite with a regular array of volume elements and constructing a stress pattern based on simple averaging procedures in the direction transverse to the fiber axis for a representative volume element. The effects of fiber aspect ratio, interfiber spacing and fiber end gap on the transverse modulus of discontinuous fiber composites are discussed in detail. The predictions of the model are compared with existing experimental results for various fiber/matrix systems and very good agreement is found. The present model has advantages over other existing models not only because the effects of fiber aspect ratio, interfiber spacing and fiber end gap are taken into account and the expression for the transverse modulus of composites is simple in form but also because the present model gives precise predictions of the transverse composite modulus. (C) 1998 Kluwer Academic Publishers. [References: 26]
机译:本文提出了一种新的预测单向连续和不连续纤维复合材料横向模量的微力学模型。该模型基于对具有规则体积元素阵列的复合材料进行建模,并基于简单的平均过程在代表纤维体积元素的纤维轴横向方向上构造应力图样。详细讨论了纤维长径比,纤维间间距和纤维末端间隙对不连续纤维复合材料横向模量的影响。将模型的预测与各种纤维/基质系统的现有实验结果进行比较,发现非常吻合。与其他现有模型相比,本模型具有优势,不仅因为考虑了纤维长宽比,纤维间间距和纤维端部间隙的影响,而且复合材料的横向模量表达式形式简单,而且因为本模型给出了精确的模型。复合模量的预测。 (C)1998 Kluwer学术出版社。 [参考:26]

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