A Review on the Friction Stir Brazing for Joining Dissimilar Materials

A. Subhi
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Abstract

Friction stir brazing (FSB) is a new technology developed for its ability to join similar and dissimilar metals and alloys resulting in a joint with considerable characteristics through the use of interlayer (braze) material under the action of a pinless rotating tool and other FSB parameters. The frictional heat during FSB is responsible for the melting of the braze material between the two workpieces, while the shoulder action must be satisfactory for the extrusion of the excess braze liquid phase depending on the FSB parameters used. The parameters of FSB also have a considerable impact on the microstructure and mechanical characteristics of friction stir brazed (FSBed) joints. Sound interfacial bonding can be observed in the central zone of FSBed joints, where intermetallic compounds (IMCs) can be formed by direct diffusion among the dissimilar workpieces after extrusion of liquid phase rather than by mechanical mixing or solidification of braze material. Increasing the transverse speed at a constant rotational speed has an influence on the peak temperature, but it remarkably reduces the holding time owing to the increased cooling rate. The use of vibration in the FSB increments the fluidity of the molten braze material among the joining workpieces resulting in a more homogeneous distribution of IMCs particles. In this review article, FSB parameters, bonding mechanisms, as well as the microstructure, and mechanical properties of FSBed joints are reviewed.
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搅拌摩擦钎焊连接异种材料的研究进展
搅拌摩擦钎焊(FSB)是一种新技术,它能够在无销旋转工具和其他FSB参数的作用下,通过使用中间层(钎焊)材料连接相似和不同的金属和合金,从而获得具有相当特性的连接。在FSB过程中,摩擦热负责熔化两个工件之间的钎焊材料,而根据所使用的FSB参数,肩部动作必须令人满意地挤出多余的钎焊液相。搅拌摩擦钎焊参数对搅拌摩擦钎焊接头的显微组织和力学特性也有较大的影响。在FSBed接头的中心区域可以观察到良好的界面结合,其中金属间化合物(IMCs)可以通过液相挤压后在不同工件之间直接扩散而不是通过钎焊材料的机械混合或凝固形成。在恒定转速下提高横向速度对峰值温度有影响,但由于冷却速度的增加,保温时间明显缩短。在FSB中使用振动增加了熔化的钎焊材料在连接工件之间的流动性,从而使IMCs颗粒分布更加均匀。本文综述了FSB的参数、结合机理以及FSB接头的显微组织和力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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