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Joining of metal matrix composites using friction stir welding: a review

机译:使用摩擦搅拌焊接加入金属基质复合材料:综述

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摘要

The application of fusion welding process is restricted to certain grades of alloys and materials. Solid-state joining process offers greater advantages over fusion welding process such as fumeless and effective joining, minimum or no preparation time, environment friendly, etc. One such solid-state joining process is friction stir welding (FSW), which uses a non-consumable rotating tool. This rotating tool joins the two faying surfaces of the workpiece by forging them. This joining technique successfully joins metals, alloys and metal matrix composite (MMC), which are considered as difficult to join using conventional processes. The present study is an endeavor to review a specific domain of FSW, i.e. joining of MMCs. The initial part of the study provides a detailed introduction about the FSW process, and along with it, an overview of the published literature related to FSW of alloys has been presented. The later part of the study pays specific attention to macrostructure, microstructure, joint properties and residual stresses in welded joints along with wearing of tool during welding of MMC. The observations of this study provide a basis for future research in the specified domain.
机译:熔融焊接过程的应用仅限于某些合金和材料等级。固态连接过程提供更大的优点,这些优点是融合焊接过程,如无变和有效的连接,最小或没有准备时间,环境友好等。一种这种固态连接过程是摩擦搅拌焊接(FSW),其使用非可消耗旋转工具。该旋转工具通过锻造工件的两个卸料表面加入。这种连接技术成功地加入金属,合金和金属基质复合物(MMC),其被认为难以使用常规方法加入。本研究是审查FSW的特定领域的努力,即加入MMC。该研究的初始部分提供了关于FSW过程的详细介绍,以及它的概述了与合金的FSW相关的公开文献。该研究的后期部分对焊接接头的宏观结构,微观结构,关节性能和残余应力以及在MMC的焊接期间的磨损期间的磨损。该研究的观察结果为未来的指定领域的研究提供了基础。

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