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AZ31Mg/2A12Al爆炸复合板界面组织与性能
引用本文:王小伟,杨东青,李晓鹏,王磊,王克鸿. AZ31Mg/2A12Al爆炸复合板界面组织与性能[J]. 焊接学报, 2021, 42(5): 14-17. DOI: 10.12073/j.hjxb.20201009001
作者姓名:王小伟  杨东青  李晓鹏  王磊  王克鸿
作者单位:南京理工大学,受控电弧智能增材技术工信部重点实验室,南京,210094
基金项目:国家自然科学基金资助项目(51805266,51805265)
摘    要:镁合金板上复合铝合金板对拓宽镁合金的使用范围具有重要意义.?采用爆炸焊接进行了镁合金板和铝合金板工艺试验,并制成镁合金和铝合金复合板.?使用光学显微镜、扫描电子显微镜观察焊后复合板结合界面处的微观形貌,分析了界面形成过程.?使用显微硬度计和剪切试验机测量了复合板结合界面处的硬度和抗剪强度.?结果表明,经爆炸焊接后,复合...

关 键 词:爆炸焊接  AZ31镁合金  2A12铝合金  组织  力学性能
收稿时间:2020-10-09

Microstructure and mechanical properties of AZ31Mg/2A12Al laminated composites interface fabricated by explosive welding
Affiliation:Key Laboratory of Controlled Arc Intelligent Additive Manufacturing Technology, Ministry of Industry and Information Technology, Nanjing, 210094, China
Abstract:To compound aluminum alloy plate on the magnesium alloy plate is of great significance to broaden the application range of magnesium alloy. The compounding process test of magnesium alloy plate and aluminum alloy plate was carried out by explosive welding, and the magnesium alloy and aluminum alloy composite plate was fabricated by explosive welding. The optical microscope (OM) and scanning electron microscope (SEM) were used to observe and study the micro-morphology of the bonding interface of the composite board, and the formation process of the interface was analyzed. The hardness and shear strength at the bonding interface of the composite board were measured using a microhardness tester and a shear test machine. The results showed that the melting zone of the composite plate interface fabricated by explosive welding occurred solidified melts, and the structure was a mixture of Al3Mg2 and Al12Mg17 intermetallic compounds. The hardness of the melting zone was 126 HV, which was significantly higher than the substrate hardness (Al alloy 110 HV, Mg alloy 70 HV). There were differences in the shear strength of the specimens in the same sampling direction: the shear strength of the specimens cut along X axis shown a trend of first increasing and then decreasing, and the average value of the shear strength were 112.3 MPa (vertical to the explosion direction) and 87.0 MPa (parallel to the explosion direction); The shear strength of the specimens in the Y-axis direction was basically equivalent, which the value of the shear strength in average were 56.5 MPa (vertical to the explosion direction) and 61.0 MPa (parallel to the explosion direction).
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