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Experimental Method for Tensile Testing of Unidirectional Carbon Fibre Composites Using Improved Specimen Type and Data Analysis

机译:使用改进的样品类型和数据分析单向碳纤维复合材料的拉伸试验试验方法

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摘要

This paper presents an experimental method for tensile testing of unidirectional carbon fibre composites. It uses a novel combination of a new specimen geometry, protective layer, and a robust data analysis method. The experiments were designed to test and analyze unprotected (with conventional end-tabs) and protected (with continuous end-tabs) carbon fibre composite specimens with three different specimen geometries (straight-sided, butterfly, and X-butterfly). Initial stiffness and strain to failure were determined from second-order polynomial fitted stress–strain curves. A good agreement between back-calculated and measured stress–strain curves is found, on both composite and fibre level. For unprotected carbon composites, the effect of changing specimen geometry from straight-sided to X-butterfly was an increase in strain to failure from 1.31 to 1.44%. The effect of protection on X-butterfly specimens was an increase in strain to failure from 1.44 to 1.53%. For protected X-butterfly specimens, the combined effect of geometry and protection led to a significant improvement in strain to failure of 17% compared to unprotected straight-sided specimens. The observed increasing trend in the measured strain to failure, by changing specimen geometry and protection, suggests that the actual strain to failure of unidirectional carbon composites is getting closer to be realized.
机译:本文介绍了单向碳纤维复合材料的拉伸检测的实验方法。它使用新的样本几何形状,保护层和鲁棒数据分析方法的新颖组合。该实验旨在测试和分析未受保护的(用常规端片),并保护(带连续的端部标签)碳纤维复合标本,具有三种不同的样品几何形状(直侧,蝴蝶和X-蝶形)。从二阶多项式拟合应力 - 应变曲线确定初始刚度和失效应变。在复合材料和纤维水平上发现了背部计算和测量的应力曲线之间的良好一致性。对于未受保护的碳复合材料,改变样品几何形状从直线向X-蝶形的效果是菌株的增加,从1.31到1.44%。保护对X-蝶形标本的影响是菌株的增加,失效为1.44至1.53%。对于受保护的X-蝶形标本,与未受保护的直侧标本相比,几何和保护的综合效果导致菌株对17%的菌株的显着改善。通过改变样品几何和保护的测量菌株对失效的测量疲劳的增加表明,单向碳复合材料的实际应变越来越接近。

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