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Laser roll welding of dissimilar metal joint of titanium to aluminium alloy

机译:钛与铝合金异种金属接头的激光辊焊

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Recently, the demand for dissimilar metal joints of titanium to aluminium alloy has arisen in industry, especially in the transportation vehicle industry. However, it is well known that fusion welding of titanium to aluminium alloy is difficult because of generating the brittle intermetallic compound at the joint interface. Therefore, new welding processes with high reliability and productivity for these dissimilar materials are demanded. In the present work, Laser roll welding of titanium to aluminium alloy using a 2 kW fibre laser was tried to investigate the effects of the process parameters on the formation of the interlayer and the mechanical properties of the joint. As a result, the cross-section of the joint shows partial melting of the aluminium sheet and spreading of molten aluminium alloy on the titanium sheet occurs during the welding thermal cycle. Various types of intermetallic compound were confirmed at the interlayer of the welded joint. The specimen with a bonding width of 2.8 mm failed in the base metal of titanium in the tensile shear test. In Erichsen cupping tests, the Erichsen value was 5.7 mm. This value was 89 percent of the base metal of aluminium sheet.
机译:近来,在工业中,特别是在运输车辆工业中,对钛与铝合金的异种金属接头的需求不断增长。但是,众所周知,由于在接合界面处产生脆性的金属间化合物,因此钛与铝合金的熔焊是困难的。因此,需要用于这些异种材料的具有高可靠性和生产率的新焊接工艺。在目前的工作中,尝试使用2 kW光纤激光器对钛与铝合金进行激光辊焊,以研究工艺参数对中间层形成和接头机械性能的影响。结果,接头的横截面显示出铝板的部分熔融,并且在焊接热循环期间发生熔融铝合金在钛板上的扩散。在焊接接头的中间层确认了各种类型的金属间化合物。在拉伸剪切试验中,粘结宽度为2.8 mm的样品未进入钛母材。在Erichsen拔罐测试中,Erichsen值为5.7毫米。该值是铝板母材的89%。

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