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A Review of Technologies for Welding Magnesium Alloys to Steels

机译:焊接镁合金的技术综述钢材

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摘要

We survey various state-of-the-art methods for welding magnesium alloys and steels using different joint configurations. Microstructural characterizations indicate that four microstructures may form at the Mg/steel interface after welding: unwelded gap, metal oxides, solid solutions, or intermetallic compounds. Reaction products at the Mg/steel interface vary with different welding methods, alloying elements in base materials, interlayers or coatings applied, and preparations of base material before welding. Mechanical property characterizations, (a) lap tensile shear testing for lap-welded and spot-welded joints, (b) tensile testing for butt-welded joints and (c) fatigue properties of lap-welded and spot-welded joints are summarized and compared, separately. Reaction products at the Mg/steel interface are correlated with mechanical properties. Finally, ways to enhance Mg/steel joint strength, such as introducing interlocking features during friction stir lap and butt welding, are discussed.
机译:我们使用不同的关节配置调查用于焊接镁合金和钢的各种最先进的方法。微结构表征表明,在焊接后Mg /钢界面可以形成四种微观结构:未容布的间隙,金属氧化物,固溶体或金属间化合物。 Mg /钢界面处的反应产物随着不同的焊接方法,基础材料中的合金元素,施加的夹层或涂层,以及焊接前的基材的制备。机械性能特征,(a)搭接焊接和点焊接头的LAP拉伸剪切测试,(b)对接焊接接头的拉伸试验和搭接焊接和点焊接头的疲劳性能,并进行比较, 分别地。 Mg /钢界面处的反应产物与机械性能相关。最后,讨论了提高Mg /钢结强度的方法,例如在摩擦搅拌圈和对焊接期间引入互锁特征。

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