摩擦铆接适用于各种异种材料的连接

R. Sankaranarayanan, N. Hynes
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引用次数: 10

摘要

运输行业的巨大需求和挑战,如成本削减措施、新的环保法规和运输量的惊人增长,为具有高断裂韧性、更好的环境抗性和可回收性的新材料的巧妙连接技术打开了窗口。但材料及其转化为产品在适用性中起着主要作用。热塑性塑料在大型结构部件中的使用也面临着类似的多材料结构连接的模糊性。摩擦辅助铆接技术称为“摩擦铆接”,是解决这些挑战的有效连接技术。材料的加工是关键的研究领域,在性能,强度和耐久性方面预期所需的结果。本文对典型研究进行了综述。本文对转速等工艺参数的影响和影响进行了研究,为进一步改进提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Friction riveting for joining of wide range of dissimilar materials
Considerable as well as thriving demand and challenges of transportation industry such as cost cutting measures, new environmental conservation regulations and the impressive growth in terms of transport volumes open windows for ingenious joining technologies for new materials that possess high fracture toughness, better environmental resistance characteristics and recyclability. But materials and their conversion into products play the major role in the applicability. Escalation of thermoplastic usage in large structural components also faces similar ambiguity for joining multi-material structures. Friction assisted riveting technology called ‘Friction riveting’ is the cogent joining technology in tackling these challenges. Processing of materials is the key research area where the required outcomes are expected in terms of performance, strength and durability. Typical studies are discussed in this review article. A study on the influences and impacts of process parameters such as rotational speed is presented in this paper which provides a new gateway for the further betterments.
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