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首页> 外文期刊>Journal of Materials Processing Technology >Butt welding-brazing of steel to aluminum by hybrid laser-CMT
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Butt welding-brazing of steel to aluminum by hybrid laser-CMT

机译:用杂交激光CMT对接焊接钢到铝制

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摘要

A laser penetration welding-brazing combined with Cold Metal Transfer (CMT) arc, was proposed to improve weld shape and interfacial reaction inhomogeneity of 5052 aluminum alloy and Q235 low carbon steel with ER5356 welding wire in butt joint. The effects of wire feed speed, beam offset and welding speed on weld shape, interfacial microstructures and tensile strength of joints was studied. This method improved the undercut defect existed in butt laser welding-brazing, obtained well-formed joints and promoted the uniform distribution of the interface reaction. The interfacial intermetallic compounds (IMCs) layer consisted of Fe2Al5 and Fe4Al13 and the thicknesses were controlled to 3-5 mu m. Microstructures of weld seam was composed of alpha-Al and Al3Mg2. The brittle IMCs layer thickened and then the tensile strength decreased with increasing the wire feed speed. The thickness of the IMCs layer decreased but weld shape became worse when the welding speed or the offset increased. The tensile strength increased first and then decreased. The highest tensile strength reached higher than 80 MPa and the joint fractured in IMCs layer along the interface.
机译:一种激光焊接渗透,钎焊用冷金属过渡(CMT)电弧合并,提出了以提高焊缝形状,并且具有在ER5356对接焊丝的5052铝合金和Q235低碳钢界面反应的不均匀性。研究了送丝速度,光束偏移和焊接速度对焊接形状,界面微观结构和关节抗拉强度的影响。该方法改善了对接激光焊接钎焊的底切缺陷,得到了良好的接头,促进了界面反应的均匀分布。由Fe2Al5和Fe4Al13组成的界面金属间化合物(IMC)层和厚度控制在3-5μm。焊缝的微观结构由α-Al和Al3mg2组成。脆性IMCS层加厚,然后随着送丝速度的增加而降低拉伸强度。所述化合物层的厚度减少,但焊缝形状变差当焊接速度或偏移增加。拉伸强度先增加,然后减少。沿界面达到高于80MPa的最高拉伸强度和在IMCS层中裂缝的关节。

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