Fiber Laser Welding–Brazing Characteristics of Dissimilar Metals AZ31B Mg Alloys to Copper with Mg-Based Filler

被引:1
|
作者
Xiaoye Zhao
Caiwang Tan
Shenghao Meng
Bo Chen
Xiaoguo Song
Liqun Li
Jicai Feng
机构
[1] Harbin Institute of Technology,State Key Laboratory of Advanced Welding and Joining
[2] Harbin Institute of Technology at Weihai,Shandong Provincial Key Laboratory of Special Welding Technology
关键词
dissimilar metals; laser welding–brazing; microstructure; mechanical properties;
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中图分类号
学科分类号
摘要
Fiber laser welding–brazing of 1-mm-thick AZ31B Mg alloys to 1.5-mm-thick copper (T2) with Mg-based filler was performed in a lap configuration. The weld appearance, interfacial microstructure and mechanical properties were investigated with different heat inputs. The results indicated that processing windows for optimizing appropriate welding parameters were relatively narrow in this case. Visually acceptable joints with certain strength were achieved at appropriate welding parameters. The maximum tensile-shear fracture load of laser-welded-brazed Mg/Cu joint could reach 1730 N at the laser power of 1200 W, representing 64.1% joint efficiency relative to AZ31Mg base metal. The eutectic structure (α-Mg + Mg2Cu) and Mg-Cu intermetallic compound was observed at the Mg/Cu interface, and Mg-Al-Cu ternary intermetallic compound were identified between intermetallics and eutectic structure at high heat input. All the joints fractured at the Mg-Cu interface. However, the fracture mode was found to differ. For laser power of 1200 W, the surface was characterized by tearing edge, while that with poor joint strength was almost dominated by smooth surface or flat tear pattern.
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页码:1427 / 1439
页数:12
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