Predicting Elastic Constants of 2D-Braided Fiber Rigid and Elastomeric–Polymeric Matrix Composites

J. Carey, A. Fahim, M. Munro
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引用次数: 24

Abstract

In a previous work, an analytical model based on Classical Laminate Plate Theory (CLPT) was developed to predict the braid elastic constants (Ex, Ey, Gxy and xy) of closed-mesh 2Dbraided fiber composite. In this work, the sensitivity of the braid elastic constants to composite constituent elastic constants was evaluated. The torsion of thin-walled tubes was used to experimentally obtain the braid shear modulus. The results predicted by the model are in good agreement with other models and with experimental results for Ex and Gxy of Kevlar 49 fiber-braided tubes with both rigid epoxy and elastomeric polyurethane resin matrices.
二维编织纤维刚性和弹性体-聚合物基复合材料弹性常数预测
基于经典层叠板理论(CLPT),建立了一种分析模型来预测封闭网格2编织纤维复合材料的编织弹性常数(Ex, Ey, Gxy和xy)。本文研究了编织弹性常数对复合构件弹性常数的敏感性。利用薄壁管的扭转量,实验得到了编织剪切模量。该模型的预测结果与其他模型的预测结果以及对刚性环氧树脂和弹性体聚氨酯纤维编织管的Ex和Gxy的实验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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