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Elastic Properties of Carbon Fibre-Reinforced Epoxy Composites

机译:碳纤维增强环氧树脂复合材料的弹性性能

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摘要

The aim of this work was to investigate the prediction of the elastic constants of carbon fibre-reinforced epoxy laminated composites using a simple mathematical approach. For this purpose, a Matlab Calculation Code (MCC) has been developed in MATLAB, which provides sufficient capabilities for analysis of the mechanical behaviour of composite materials. The MATLAB code enables a variety of fibre orientation angles to be generated and a wide variety of fibre volume fractions to be analyzed under mechanical loading. In order to validate the accuracy of prediction results, a commercial grade epoxy resin (Araldite LY-5052) and unidirectional carbon fibre (Torayca 1700) were used to fabricate some samples of laminated composites with cross-ply configuration using the hand lay-up method. Experimental results such as elastic modulus, tensile strength as well as elongation at break were compared with the theoretical data extracted from MCC. The theoretical analysis were verified with experimental results for the same type of composites. Although the values were different, excellent agreement in the trends of the changes was found for the two approaches. Therefore, it was concluded that the MCC is capable of predicting the elastic constants of laminated composites with a high level of confidence for a wide range of fabricating conditions. The results also showed that the tensile properties of composites made with 3-layer were generally greater than those of the other evaluated composites. This kind of behaviour may be explained by bondline defects, which adversely influence the mechanical properties.
机译:这项工作的目的是使用一种简单的数学方法来研究碳纤维增强的环氧层压复合材料的弹性常数的预测。为此,在MATLAB中开发了Matlab计算代码(MCC),该代码提供了足够的能力来分析复合材料的机械性能。 MATLAB代码可在机械载荷下生成各种纤维取向角,并分析各种纤维体积分数。为了验证预测结果的准确性,使用了商用级环氧树脂(Araldite LY-5052)和单向碳纤维(Torayca 1700)来通过手工铺网方法来制造一些具有交叉层结构的层压复合材料样品。将实验结果如弹性模量,抗张强度以及断裂伸长率与从MCC提取的理论数据进行了比较。对于相同类型的复合材料,理论分析得到了实验结果的验证。尽管值不同,但是对于两种方法,在变化趋势中发现了极好的一致性。因此,可以得出结论,MCC能够在广泛的制造条件下以高置信度预测层压复合材料的弹性常数。结果还表明,由三层复合材料制成的复合材料的拉伸性能通常大于其他评估的复合材料。这种行为可以用键合线缺陷来解释,这会对机械性能产生不利影响。

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