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Strength and Failure Analysis of Composite-to-composite Adhesive Bonds with Different Surface Treatments

机译:不同表面处理的复合复合胶粘强度和破坏分析

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摘要

Adhesives are widely utilized materials in aviation, automotive, energy, defense, and marine industries. Adhesive joints are gradually supplanting mechanical fasteners because they are lightweight structures, thus making the assembly lighter and easier. They also act as a sealant to prevent a structural joint from galvanic corrosion and leakages. Adhesive bonds provide high joint strength because of the fact that the load is distributed uniformly on the joint surface, while in mechanical joints, the load is concentrated at one point, thus leading to stress at that point and in turn causing joint failures. This research concentrated on the analysis of bond strength and failure loads in adhesive joint of composite-to-composite surfaces. Different durations of plasma along with the detergent cleaning were conducted on the composite surfaces prior to the adhesive applications and curing processes. The joint strength of the composites increased about 34% when the surface was plasma treated for 12 minutes. It is concluded that the combination of different surface preparations, rather than only one type of surface treatment, provides an ideal joint quality for the composites.
机译:胶粘剂是航空,汽车,能源,国防和海洋工业中广泛使用的材料。粘合接头由于是轻质结构,因此逐渐取代了机械紧固件,从而使组装更轻,更容易。它们还充当密封剂,以防止结构接头受到电腐蚀和泄漏。由于载荷均匀地分布在接头表面,而在机械接头中,载荷集中在一个点上,因此在该点处产生应力,进而导致接头失效,因此,胶粘剂提供了很高的接头强度。这项研究集中在分析复合材料到复合材料表面胶粘接头的粘结强度和破坏载荷。在施加粘合剂和固化工艺之前,在复合材料表面上进行了不同时间的等离子体处理以及清洁剂清洗。当表面经过等离子处理12分钟后,复合材料的接缝强度提高了约34%。结论是,不同表面处理的结合,而不只是一种表面处理,为复合材料提供了理想的接合质量。

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