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Dissimilar Ti/Mg alloy butt welding by fibre laser with Mg filler wire ‐ preliminary study

机译:光纤激光与镁填充丝的异种Ti / Mg合金对接焊-初步研究

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A fibre laser was used to join Ti‐6Al‐4V alloy to AZ31B Mg alloy with the same thickness of 2 mm, and a filler wire was used to avoid weld underfill resulting from Mg vaporisation. The acceptable joints were only obtained when the laser beam was offset from the edge of the weld seam at 0·2 mm to the AZ31B side of the joint. Cross-weld tensile testing found joint strengths of up to 200·3 MPa, which is 85·1% of the AZ31B tensile strength. All the joints were fractured at the Ti/fusion zone interfacial layer. When the laser offset increased from 0·2 to 0·3 mm or laser power reduced to 1·2 kW, the joining mode of the interfacial layer changed from a semimetallurgical joining with high strength to a mechanical joining with poor strength. Moreover, the fracture surface of acceptable joints was characterised by scraggly remaining weld metal, while that of poor joints was almost only characterised by smooth Ti surface.
机译:使用光纤激光器将Ti-6Al-4V合金与厚度为2 mm的AZ31B Mg合金连接起来,并使用填充焊丝来避免由于Mg汽化而导致的焊缝底部填充。仅当激光束从焊缝边缘偏移0·2 mm到接头的AZ31B侧时,才能获得可接受的接头。交叉焊接拉伸测试发现,接头强度高达200·3 MPa,是AZ31B拉伸强度的85·1%。在钛/熔合区界面层处所有接头均断裂。当激光偏移从0·2增加到0·3 mm或激光功率降低到1·2 kW时,界面层的接合方式从高强度的半冶金接合变为强度低的机械接合。此外,可接受的接头的断裂表面的特征是残留的焊接金属残留,而不良接头的断裂表面几乎仅具有光滑的Ti表面。

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