首页> 外文会议>International conference on processing manufacturing of advanced materials;THERMEC 2009 >Effects of Tool Design and Friction Stir Welding Parameters on Weld Morphology in Aluminum Alloys
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Effects of Tool Design and Friction Stir Welding Parameters on Weld Morphology in Aluminum Alloys

机译:模具设计和搅拌摩擦焊接参数对铝合金焊接形态的影响。

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Friction stir welding (FSW) is a complex thermo-mechanical process which produces wrought microstructure with microstructural gradients in grain size, grain orientation, dislocation density, and precipitate distribution. The type and degree of microstructural modification is a function of the particular alloy chosen, its initial temper, the tool design and corresponding weld process parameter window, and other variables like material thickness, size, fixturing, etc. Since the microstructural changes produced can dramatically affect resultant mechanical performance and corrosion response, a thorough understanding of the variables involved in those changes is needed. A design of experiments approach was used to study the effects of welding parameter selection on the microstructural changes wrought by FSW with two different sizes of the same FSW tool design. A combination of microhardness mapping and electrical conductivity testing was used to investigate potential differences. The importance of these factors and the means for characterizing them for developing standards and specifications are also discussed.
机译:搅拌摩擦焊(FSW)是一种复杂的热机械过程,会产生变形的微结构,并在晶粒尺寸,晶粒取向,位错密度和析出物分布方面具有微结构梯度。显微组织改性的类型和程度取决于所选合金,其初始回火,工具设计和相应的焊接工艺参数窗口以及其他变量(例如材料厚度,尺寸,夹具等)的函数。由于产生的显微组织变化会显着改变由于影响了最终的机械性能和腐蚀响应,因此需要对这些变化所涉及的变量有透彻的了解。设计了一种实验方法来研究焊接参数选择对具有相同FSW工具设计的两种不同尺寸的FSW引起的微观结构变化的影响。结合显微硬度测绘和电导率测试来研究电势差。还讨论了这些因素的重要性以及表征这些因素以制定标准和规范的方法。

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