首页> 外文期刊>Journal of Materials Science >FORMATION OF A CRACK-FREE JOINT BETWEEN TI ALLOY AND AL ALLOY BY USING A HIGH-POWER CO2 LASER
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FORMATION OF A CRACK-FREE JOINT BETWEEN TI ALLOY AND AL ALLOY BY USING A HIGH-POWER CO2 LASER

机译:利用高功率二氧化碳激光在TI合金和铝合金之间形成无裂纹的接头

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摘要

The present paper aims at producing a crack-free weld between a commercially available Ti alloy (Ti-6 wt% Al-4 wt% V) and a wrought Al alloy (Al-1 wt% Mg-0.9 wt% Si). Ti alloy and Al alloy with a plate thickness of 3 mm are butt welded using a 2.5 kW continuous CO2 laser. The laser power, welding speeds and offset of the laser with respect to the joint are considered as the variable parameters. It is observed that intermetallic compounds (mainly TiAl and Ti3Al) are formed in the fusion zone depending on the amount of Al and Ti melted by the laser. These intermetallic phases are very brittle and the solid-state cracks are formed near the Al side of the interface because of the stress developed after the solidification. The formation of cracks is sensitive to the total Al content in the fusion zone. In order to minimize the dissolution of Al in the fusion zone and to increase the toughness of the intermetallic phases, Nb foil is added as a buffer between the Ti alloy and Al alloy workpieces. It is observed that the partially melted Nb acts as a barrier to dissolve Al in the fusion zone and facilitates a good joining condition for welding of Ti alloy with Al alloy. [References: 16]
机译:本论文旨在在市售的Ti合金(Ti-6 wt%Al-4 wt%V)和可锻铝合金(Al-1 wt%Mg-0.9 wt%Si)之间产生无裂纹的焊缝。使用2.5 kW连续CO2激光对接3mm厚度的钛合金和铝合金。激光功率,焊接速度和激光相对于接头的偏移被视为可变参数。观察到,取决于激光熔化的Al和Ti的量,在熔融区中形成金属间化合物(主要是TiAl和Ti3Al)。这些金属间相非常脆,并且由于固化后产生的应力而在界面的Al侧附近形成固态裂纹。裂纹的形成对熔合区总Al含量敏感。为了最大程度地减少Al在熔化区的溶解并提高金属间相的韧性,在Ti合金和Al合金工件之间添加Nb箔作为缓冲剂。可以看到,部分熔化的Nb充当了将Al溶解在熔合区的障碍,并促进了Ti合金与Al合金的良好焊接条件。 [参考:16]

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