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首页> 外文期刊>Journal of Composite Materials >Experimental analysis of adhesively bonded joints in synthetic- and natural fibre-reinforced polymer composites
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Experimental analysis of adhesively bonded joints in synthetic- and natural fibre-reinforced polymer composites

机译:合成 - 天然纤维增强聚合物复合材料中粘合接头的实验分析

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摘要

The application of adhesively bonded joints in automotive industry has increased significantly in recent years mainly because of the potential for lighter weight vehicles, fuel savings and reduced emissions. The use of composites in making automotive body components to achieve a reduced vehicle mass has also continuously increased. Natural fibre composites have recently attracted a great deal of attention by the automotive industry due to their many attractive benefits (e.g. high strength-to-weight ratio, sustainable characteristics and low cost). However, the literature on natural fibre-reinforced polymer composite adhesive joints is scarce and needs further investigation. The main objective of this study was to evaluate and compare the mechanical performance of adhesively bonded joints made of synthetic- and natural fibre-reinforced polymer composites. Similar and dissimilar single lap joints bonded with a modern tough structural adhesive used in the automotive industry, as well as the epoxy resin AR260 (the same resin used in composite fabrication) were tested. It was found that the average failure loads varied significantly with adhesive material strength and adherend stiffness. Furthermore, it was also observed that failure mode has a significant effect in failure load. The jute-based natural fibre composites joints, both hybrid and purely natural, were superior in strength compared to the sisal-based natural composites joints.
机译:近年来,在汽车工业中粘接接头在汽车工业中的应用主要是由于较轻的重量速度,燃料节省和排放减少的潜力。使用复合材料在制造汽车车身部件以实现降低的车辆质量的情况下也连续增加。由于其许多有吸引力的益处(例如,高强度为重量比,可持续特征和低成本,最近,天然纤维复合材料最近引起了汽车行业的大量关注。然而,天然纤维增强聚合物复合粘合剂接头上的文献稀缺,需要进一步调查。本研究的主要目的是评估和比较由合成和天然纤维增强聚合物复合材料制成的粘合接头的机械性能。测试了与汽车工业中使用的现代坚韧结构粘合剂的类似和不同的单圈接头,以及环氧树脂AR260(在复合制造中使用的相同树脂)。发现平均故障载荷随着粘性材料强度和粘附刚度而变化。此外,还观察到,失效模式对故障负荷具有显着影响。与基于Sisal的天然复合材料接头相比,杂交和纯天然的基于酸性的天然纤维复合材料接头均优于强度优异。

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