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Joining and Fabrication of Metal Matrix Composites by Friction Stir Welding/Processing

机译:金属基复合材料的摩擦搅拌焊接/加工连接与制备

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摘要

Herein, friction stir welding (FSW) of metal matrix composites (MMCs) with different combinations of the reinforcement and the metal matrix is highlighted with a brief introduction into recent efforts that have been used to fabricate MMCs by FSW. As a solid state joining technique, FSW consumes significantly lower energy than conventional fusion welding processes. In addition to properly selecting the process parameters, the mechanical properties of the FSW joints of MMCs are closely related with the refinement and homogeneous distribution of reinforcements in the stir zone. The fatigue and fracture properties of MMCs may be enhanced or aggravated by FSW, depending on the combination of the reinforcement and the metal matrix. For FSW of MMCs, the selection of the tool material can also be a critical issue; the presence of hard reinforcements may increase the rate of tool wear. Macro- and microstructural phenomena for MMCs during FSW depend on the material flow due to plasticization and the behavior of the reinforcements. Even though FSW are generally expected to induce a homogeneous distribution of reinforcements in the stir zone (SZ), it can be difficult to obtain a homogeneous distribution of reinforcements in the SZ depending on the combination of the reinforcement and the metal matrix. The existence of reinforcements naturally affects the microstructure of the joint and can even induce the formation of intermetallics/complex phases in the joint. This review provides a general understanding of the joining or in-situ fabrication of MMCs using solid-state friction stirring.
机译:在此,通过对由FSW用于制造MMC的最新工作的简要介绍,着重介绍了具有不同的增强材料和金属基体组合的金属基复合材料(MMC)的摩擦搅拌焊接(FSW)。作为一种固态连接技术,FSW的能耗比传统的熔焊工艺低得多。除了适当选择工艺参数之外,MMC的FSW接头的机械性能还与搅拌区内钢筋的细化和均匀分布密切相关。取决于增强材料和金属基体的组合,MMC的疲劳和断裂性能可通过FSW增强或加重。对于MMC的FSW,工具材料的选择也可能是一个关键问题。硬质增强材料的存在可能会增加工具的磨损率。 MSW在FSW期间的宏观和微观结构现象取决于增塑和增强材料行为导致的材料流动。即使通常预期FSW会在搅拌区(SZ)中引起钢筋的均匀分布,但根据钢筋和金属基体的组合,可能很难在SZ中获得钢筋的均匀分布。增强材料的存在自然会影响接头的微观结构,甚至会导致接头中金属间化合物/复杂相的形成。这篇综述提供了使用固态摩擦搅拌对MMC的接合或原位制造的一般理解。

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