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The effects of graphene nanostructure reinforcement on the adhesive method and the graphene reinforcement ratio on the failure load in adhesively bonded joints

机译:石墨烯纳米结构增强对粘结方法的影响以及石墨烯增强比对粘结接头破坏载荷的影响

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This study experimentally determines the tensile failure load of the nanocomposite adhesive - obtained by adding nanostructures to the adhesive - using four different methods in single-lap joints. For the study, adhesively bonded single-lap joints were produced by using DP460 liquid structural epoxy as the adhesive, AA2024-T3 aluminum alloy as the adherend and graphene as the nanostructure. When the failure load obtained from the experiments was examined, it was seen that, while the nanostructure-reinforced methods indicated in the literature have a great effect on the failure load of the joint and the standard deviation, a new method developed in this study increased the failure load of the joint and minimized the standard deviation. These improvements increased the reliability and reproducibility of the joint. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究实验性地确定了纳米复合胶粘剂的拉伸破坏载荷-通过将四种纳米结构添加到胶粘剂中-在单搭接接头中使用四种不同的方法。为了进行研究,通过使用DP460液态结构环氧树脂作为粘合剂,AA2024-T3铝合金作为被粘物以及石墨烯作为纳米结构来生产粘合的单搭接接头。当检查从实验获得的破坏载荷时,可以看到,尽管文献中指出的纳米结构增强方法对接头的破坏载荷和标准偏差有很大影响,但这项研究中开发的新方法增加了关节的失效载荷,并使标准偏差最小。这些改进提高了接头的可靠性和可重复性。 (C)2016 Elsevier Ltd.保留所有权利。

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