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The Influence of Friction Stir Weld Tool Form and Welding Parameters on Weld Structure and Properties: Nugget Bulge in Self-Reacting Friction Stir Welds

机译:搅拌摩擦焊接工具的形式和焊接参数对焊接结构和性能的影响:自反应搅拌摩擦焊接中的熔核凸起

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Although friction stir welding (FSW) was patented in 1991 [1], process development has been based upon trial and error and the literature still exhibits little understanding of the mechanisms determining weld structure and properties. New concepts emerging from a better understanding of these mechanisms enhance the ability of FSW engineers to think about the FSW process in new ways, inevitably leading to advances in the technology. A kinematic approach in which the FSW flow process is decomposed into several simple flow components has been found to explain the basic structural features of FSW welds and to relate them to tool geometry and process parameters [2, 3]. Using this modelling approach, this study reports on a correlation between the features of the weld nugget, process parameters, weld tool geometry, and weld strength. This correlation presents a way to select process parameters for a given tool geometry so as to optimize weld strength. It also provides clues that may ultimately explain why the weld strength varies within the sample population.
机译:尽管搅拌摩擦焊(FSW)于1991年获得专利[1],但工艺开发是基于反复试验的,并且文献仍然对确定焊缝结构和性能的机理了解甚少。通过更好地理解这些机制而出现的新概念增强了FSW工程师以新方式思考FSW流程的能力,这不可避免地导致了技术的进步。已经发现了一种运动学方法,其中将FSW流动过程分解为几个简单的流动分量,以解释FSW焊缝的基本结构特征,并将其与工具的几何形状和过程参数相关联[2,3]。使用这种建模方法,本研究报告了熔核特征,工艺参数,焊接工具几何形状和焊接强度之间的相关性。这种相关性提供了一种为给定工具几何形状选择工艺参数的方法,以优化焊接强度。它还提供了线索,这些线索可能最终解释了为什么焊接强度在样品总体中会发生变化。

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