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Effect of process parameters on the joint integrity in Friction Stir Welding of Ti-6Al-4V lap joints

机译:工艺参数对Ti-6Al-4V搭接接头摩擦搅拌焊接接头完整性的影响

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Friction Stir Welding (FSW) is a solid state welding process patented in 1991 by TWI; initially adopted to weld aluminum alloys, is now being successfully used also for magnesium alloys, copper and steels. The wide diffusion the process is having is due to the possibility to weld materials traditionally considered difficult to be welded or "unweldable" by traditional fusion welding processes due to peculiar thermal and chemical material properties. Additionally, the process allows welding a wide range of sheet thickness (up to 50mm) avoiding typical fusion welding processes defects, like cavities and porosities, with no shielding gas, filling material or joint preparation. Recently, research is focusing on titanium alloys thanks to the high interest that such materials are getting from the industry due to the extremely high strength-weight ratio together with good corrosion resistance properties. Welding of titanium alloys by traditional fusion welding techniques presents several difficulties due to high material reactivity resulting in bonding with oxygen, hydrogen, and nitrogen with consequent embrittlement of the joint. In this way FSW can represent a cost effective and high quality solution. A few studies have been developed on the FSW of titanium alloys butt joints, while there is a complete lack of knowledge as far as different joint morphologies are regarded (lap joints, T joints, etc.). In the paper the results of an experimental campaign on lap joints made out of thin Ti-6A1-4V sheets are presented. The effect of the main process parameters on the mechanical properties has been investigated and related to the microstructural transformations occurring during the process because of the thermo-mechanical action of the tool.
机译:搅拌摩擦焊(FSW)是TWI于1991年获得专利的一种固态焊接工艺。最初用于焊接铝合金,现在已成功地用于镁合金,铜和钢。由于具有独特的热学和化学材料特性,该工艺具有广泛的扩散性,这是由于有可能焊接传统上认为传统的熔焊工艺难以焊接或“不可焊”的材料。此外,该工艺可以焊接各种厚度的板材(最大50mm),避免了典型的熔焊工艺缺陷,例如空腔和孔隙,并且没有保护气体,填充材料或接头准备。最近,由于极高的强度重量比以及良好的耐腐蚀性,这种材料已从工业中获得了极大的兴趣,因此研究集中在钛合金上。由于高的材料反应性导致与氧,氢和氮结合并因此使接头变脆,通过传统的熔焊技术焊接钛合金存在一些困难。这样,FSW可以代表一种经济高效的高质量解决方案。对于钛合金对接接头的FSW,已经进行了一些研究,但是对于所考虑的不同接头形态(搭接接头,T型接头等)却完全缺乏知识。在本文中,介绍了由Ti-6A1-4V薄板制成的搭接接头实验活动的结果。由于工具的热机械作用,已经研究了主要工艺参数对机械性能的影响,并与工艺过程中发生的微观结构转变有关。

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