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Microstructural evolution and characteristics of weld fusion zone in high speed dissimilar welding of Ti and Al

机译:Ti和Al高速异种焊接中熔合区的组织演变及特征

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摘要

The joining or welding of dissimilar metals is one of the effective measures to reduce structures weight of the production or to save rare metals and to save a manufacturing cost. In the weld fusion zone of Ti and Al, intermetallic compounds such as Ti3Al, TiAl, TiAl2 and TiAl3 are easily formed, and especially, brittle TiAl2 and TiAl3 makes such dissimilar metals joining very difficult. However, it was clarified that an ultra-high speed welding could suppress the formation of intermetallic compounds in the previous study.(1) Full penetration dissimilar lap welding of Ti and Al with single-mode fiber laser was tried at ultra-high welding speed in this study, and the microstructure of the welded zone, interface zone and base metals in the dissimilar Al and Ti weld bead was investigated. To confirm the formation of intermetallic compounds in the weld fusion zone, welded interface areas were observed and analyzed using scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX) and micro-probe X-ray diffractometer (XRD). Especially microstructural phases of Ti and Al dissimilar welds were confirmed using transmission electron microscopy (TEM) with EDX. It was consequently found that Ti3Al intermetallic compound phase existed in all the weld fusion zones produced under any conditions, but the formation areas of such intermetallic compounds could be reduced by the ultra-high welding speed of 50 m/min.
机译:异种金属的连接或焊接是减轻产品结构重量或节省稀有金属并节省制造成本的有效措施之一。在Ti和Al的焊接熔合区中,容易形成诸如Ti 3 Al,TiAl,TiAl 2和TiAl 3的金属间化合物,特别是脆性的TiAl 2和TiAl 3使得这种异种金属的接合非常困难。然而,在先前的研究中,澄清了超高速焊接可以抑制金属间化合物的形成。(1)在超高焊接速度下尝试用单模光纤激光对Ti和Al进行全熔透异种搭接焊接在这项研究中,研究了Al和Ti不同焊道中焊接区,界面区和贱金属的显微组织。为了确认在焊接熔合区中金属间化合物的形成,使用扫描电子显微镜(SEM),能量色散X射线光谱仪(EDX)和微探针X射线衍射仪(XRD)观察并分析了焊接界面区域。使用透射电子显微镜(TEM)和EDX证实了Ti和Al异种焊缝的显微组织相。结果发现,在任何条件下产生的所有焊接熔合区中都存在Ti3Al金属间化合物相,但是通过50m / min的超高焊接速度可以减少这种金属间化合物的形成面积。

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