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Evaluation of grit-blasting as a pre-treatment for carbon-fibre thermoplastic composite to aluminium bonded joints tested at static and dynamic loading rates

机译:评估喷砂处理作为碳纤维热塑性复合材料与铝制连接接头的预处理,并在静态和动态加载速率下进行测试

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摘要

Light-weighting of transportation structures necessitates multi-material design employing composites and aluminium, with thermoplastic composites being of increasing interest to the industry. Adhesive bonding is a viable solution for joining dissimilar materials, but joint performance can be considerably affected by surface preparation. In this paper, alumina grit-blasting is investigated as a surface preparation technique for thermoplastic-matrix composites to be bonded to aluminium alloys. Grit-blasting is performed on composite adherends for varying durations, and the resulting chemical and morphological modifications are analysed using goniometry, profilometry, scanning electron microscopy, energy-dispersive X-ray spectroscopy and X-ray photoelectron spectroscopy. Adhesively-bonded single-lap joints are tested at quasi-static and dynamic (0.5 m/s) loading rates, and fractography analysis is performed at macro and micro scales. It is found that high lap shear strength and work-to-failure can be achieved through optimisation of the grit-blasting parameters. The optimised process produces a composite surface with plasticised matrix, minimal fibre exposure, and favourable surface chemistry for adhesive bonding. Grit-blasting can thus be a simple, yet effective surface preparation technique for composites to be bonded to aluminium.
机译:轻便的运输结构使采用复合材料和铝的多材料设计成为必要,而热塑性复合材料在业界越来越受到关注。粘合剂粘结是连接异种材料的可行解决方案,但表面处理会大大影响接头性能。在本文中,研究了将氧化铝喷砂处理作为热塑性基体复合材料与铝合金结合的表面制备技术。对复合被粘物执行不同时间的喷砂处理,并使用测角法,轮廓测定法,扫描电子显微镜,能量色散X射线光谱法和X射线光电子能谱分析所得的化学和形态修饰。粘接的单搭接接头在准静态和动态(0.5 m / s)的加载速率下进行测试,并在宏观和微观尺度上进行分形分析。发现通过优化喷砂参数可以实现高的搭接剪切强度和断裂功。经过优化的工艺可生产出具有增塑基质,最小化纤维暴露量以及有利于粘合剂粘合的表面化学性质的复合表面。因此,喷砂处理是一种将复合材料粘结到铝上的简单而有效的表面处理技术。

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