材料科学
金属间化合物
共晶体系
合金
扩散层
扩散焊
极限抗拉强度
接头(建筑物)
焊接
扩散
复合材料
冶金
抗剪强度(土壤)
搭接接头
扩散焊
扩散阻挡层
铝
图层(电子)
剪切(地质)
结构工程
热力学
环境科学
土壤水分
土壤科学
物理
工程类
作者
Jihong Dong,Hua Liu,Shude Ji,Dejun Yan,Huaxia Zhao
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2022-01-18
卷期号:15 (3): 696-696
被引量:8
摘要
Friction stir lap welding (FSLW) is expected to join the hybrid structure of aluminum alloy and steel. In this study, the Al-Mg-Si aluminum alloy and 301L stainless steel were diffusion bonded by FSLDW with the addition of 0.1 mm thick pure Zn interlayer, when the tool pin did not penetrate the upper aluminum sheet. The characteristics of lap interface and mechanical properties of the joint were analyzed. Under the addition of Zn interlayer, the diffusion layer structure at lap interface changed from continuous to uneven and segmented. The components of the diffusion layer were more complex, including Fe-Al intermetallic compounds (IMCs), Fe-Zn IMCs and Al-Zn eutectic. The largely changed composition and thickness of uneven and segmented diffusion layer at the lap interface played a significant role in the joint strength. The tensile shear load of Zn-added joint was 6.26 kN, increasing by 41.3% than that of Zn-not-added joint. These two joints exhibited interfacial shear fracture, while the Zn interlayer enhanced the strength of diffusion bonding by extending the propagation path of cracks.
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