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首页> 外文期刊>Journal of Materials Engineering and Performance >A Review of FSW Research on Dissimilar Metal and Alloy Systems
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A Review of FSW Research on Dissimilar Metal and Alloy Systems

机译:FSW在异种金属和合金系统中的研究述评

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摘要

This review summarizes friction-stir welding (FSW) research over a period of a decade and a half, involving 18 different same materials FSW reference systems, and the FSW of 25 different, dissimilar materials systems. These are summarized in tables. The FSW of dissimilar materials systems is distinguished from same materials systems FSW by the formation of complex, intercalated vortex, and related flow patterns. These intercalated, lamellar-like patterns represent solid-state flow by dynamic recrystallization (DRX) which facilitates unrecrystallized, block flow in the DRX regime. A detailed characterization of representative systems involving optical and transmission electron microscopy is also presented. Residual microindentation hardness or other hardness measured across the weld face provides comparative performance signatures for the same material FSW systems in contrast to the dissimilar FSW systems. Hardness fluctuations or complex spikes occurring in the dissimilar systems are skewed from the weld centerline and are shifted when the tool rotation direction changes or the advancing side is reversed.
机译:这篇综述总结了十年半的搅拌摩擦焊(FSW)研究,涉及18种不同材料的FSW参考系统和25种不同材料的FSW。这些汇总在表中。不同材料系统的FSW与相同材料系统FSW的区别在于,形成复杂的,插层的涡流和相关的流型。这些插层状的层状图案通过动态重结晶(DRX)表示固态流动,动态重结晶(DRX)促进了DRX方案中未重结晶的块状流动。还介绍了涉及光学和透射电子显微镜的代表性系统的详细特性。与不同的FSW系统相比,在整个焊接面上测得的残余微压痕硬度或其他硬度可为相同材料的FSW系统提供比较的性能特征。在不同系统中出现的硬度波动或复杂的尖峰会从焊接中心线偏斜,并在工具旋转方向改变或前进侧倒转时发生偏移。

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