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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Al-to-Mg Friction Stir Welding: Effect of Material Position, Travel Speed, and Rotation Speed
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Al-to-Mg Friction Stir Welding: Effect of Material Position, Travel Speed, and Rotation Speed

机译:铝镁搅拌摩擦焊:材料位置,移动速度和旋转速度的影响

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摘要

Because joining dissimilar metals is often difficult by fusion joining, interest has been growing rapidly in using friction stir welding (FSW), which is considered a revolutionary solid-state welding process, as a new way to join dissimilar metals such as Al alloys to Mg alloys, Cu, and steels. Butt FSW of Al to Mg alloys has been studied frequently recently, but the basic issue of how the welding conditions affect the resultant joint strength still is not well understood. Using the widely used alloys 6061 Al and AZ31 Mg, the current study investigated the effect of the welding conditions, including the positions of Al and Mg with respect to the welding tool,the tool travel speed, and the tool rotation speed on the weld strength. Unlike previous studies,the current study (1) determined the heat input by both torque and temperature measurements during FSW, (2) used color metallography with Al, Mg, Al_3Mg_2, and Al_(12)Mg_(17) all shown in different colors to reveal clearly the formation of intermetallic compounds and material flow in the stir zone, which are known to affect the joint strength significantly, and (3) determined the windows for travel and rotation speeds to optimize the joint strength for various material positions. The current study demonstrated clearly that the welding conditions affect the heat input, which in turn affects (1) the formation of intermetallics and even liquid and (2) material flow. Thus, the effect of welding conditions in Al-to-Mg butt FSW on the joint strength now can be explained.
机译:由于通常很难通过熔融连接来连接异种金属,因此人们越来越关注使用摩擦搅拌焊(FSW)作为一种将异种金属(例如铝合金)与Mg接合的新方法,这被认为是一种革命性的固态焊接工艺。合金,铜和钢。铝与镁合金的对接FSW近年来得到了广泛的研究,但是焊接条件如何影响合成接头强度的基本问题仍未得到很好的理解。使用广泛使用的6061 Al和AZ31 Mg合金,当前研究研究了焊接条件的影响,包括Al和Mg相对于焊接工具的位置,工具行进速度以及工具旋转速度对焊接强度的影响。与以前的研究不同,当前研究(1)通过FSW期间的扭矩和温度测量确定热量输入,(2)使用Al,Mg,Al_3Mg_2和Al_(12)Mg_(17)彩色显色的彩色金相学为了清楚地揭示在搅拌区中金属间化合物的形成和物料流动,已知它们会显着影响接头强度,并且(3)确定行进和旋转速度的窗口以优化各种物料位置的接头强度。当前的研究清楚地表明,焊接条件会影响热量输入,进而影响(1)金属间化合物甚至液体的形成以及(2)材料的流动。因此,现在可以解释铝对镁对接FSW中焊接条件对接头强度的影响。

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