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Clinch-bonded hybrid joining for similar and dissimilar copper alloy, aluminium alloy and galvanised steel sheets

机译:铆接的混合连接,用于相似和不同的铜合金,铝合金和镀锌钢板

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Clinch-bonded hybrid joining technology has been applied increasingly in different manufacturing disciplines. In this study, specimens of both similar and dissimilar sheets of H62 copper alloy, aluminium alloy and galvanised steel sheets were prepared in single-lap and T-joints. Tensile-shear tests and peeling tests were carried out for studying the load-bearing capacity and energy absorption of different clinch-bonded hybrid joints. The failure fractures were studied by a scanning electron microscope to characterise the different failure modes. Results show that the shear strength of the specimens, which results mainly from the adhesive, is better than their peeling strength, which is closely related to clinched structures. The mixed neck fracture exhibited the highest shear strength, and a better ability to absorb energy could be obtained by decreasing the material strength of the lower sheets in the tensile-shear test. In the peeling test, it was found that the best energy absorption ability could be achieved by the failure mode of upper sheet tearing, and improving the strength of the lower sheets resulted in greater joint peeling strength.
机译:铆接结合的混合连接技术已越来越多地应用于不同的制造领域。在这项研究中,以单搭接和T型接头制备H62铜合金,铝合金和镀锌钢板的相似和不相似薄板的标本。进行了拉伸剪切试验和剥离试验,以研究不同的压紧粘结混合接头的承载能力和能量吸收。通过扫描电子显微镜研究破坏性断裂,以表征不同的破坏模式。结果表明,试样的剪切强度主要来自胶粘剂,其剥离强度要好于剥离强度,而剥离强度与弯曲结构密切相关。混合颈骨折表现出最高的剪切强度,在拉伸剪切试验中,通过降低下层板的材料强度,可以获得更好的能量吸收能力。在剥离试验中,发现通过上层片材撕裂的破坏模式可以获得最佳的能量吸收能力,并且改善下层片材的强度导致更大的接头剥离强度。

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