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An approach to identify complex CNT reinforcement effect on the interlaminar shear strength of prepreg composites by Taguchi method

机译:用Taguchi方法确定复杂的CNT增强对预浸料复合材料层间剪切强度的影响的方法

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Several factors affect the interlaminar shear strength of carbon nanotube reinforced carbon fiber composites in multi-scale. A combined route of CNT toughening through manufacturing a custom made prepreg system with CNT dispersion in epoxy and integrating vertically aligned CNTs as nanofibers to bridge in between prepreg plies is applied to achieve enhanced interlaminar shear strength (ILSS). Depending on the CNT loading, effectiveness of dispersion and CNT bridging between prepreg plies, the mechanical enhancement is achieved up to 15%. A new approach of identifying the critical parameters of nano engineered and nano-reinforced composites through Taguchi method is a novel route for investigating the combined effects of several factors in a complex mechanical enhancement problem with reduced number of experiments as studied in here. Taguchi L8 orthogonal array is used to obtain maximum ILSS by short beam shear (SBS) test. The parametric study has shown that the most significant parameters affecting the ILSS results are type of epoxy, fabrication procedure and CNT loading. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多种因素影响碳纳米管增强碳纤维复合材料的层间剪切强度。通过制造定制的预浸料系统(具有在环氧树脂中的CNT分散体)和将垂直排列的CNT集成为纳米纤维以桥接在预浸料板之间的方式,实现CNT增韧的组合路线,以实现增强的层间剪切强度(ILSS)。取决于CNT的负载量,分散体的有效性以及预浸料片之间的CNT桥接,机械强度最高可提高15%。一种通过Taguchi方法识别纳米工程和纳米增强复合材料的关键参数的新方法,是一种通过减少实验数量来研究复杂机械增强问题中多种因素综合作用的新颖途径。 Taguchi L8正交阵列用于通过短梁剪切(SBS)测试获得最大的ILSS。参数研究表明,影响ILSS结果的最重要参数是环氧树脂类型,制造程序和CNT负载。 (C)2016 Elsevier Ltd.保留所有权利。

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