采用不同Ti含量的Sn Ag Cu-x%Ti复合钎料对K9玻璃与2507不锈钢进行了真空钎焊,研究了Ti含量对接头界面组织和力学性能的影响。采用场发射扫描电子显微镜(SEM)、能谱仪(EDS)和光学数码显微镜(OM)对钎焊接头组织结构进行了分析,用万能材...采用不同Ti含量的Sn Ag Cu-x%Ti复合钎料对K9玻璃与2507不锈钢进行了真空钎焊,研究了Ti含量对接头界面组织和力学性能的影响。采用场发射扫描电子显微镜(SEM)、能谱仪(EDS)和光学数码显微镜(OM)对钎焊接头组织结构进行了分析,用万能材料试验机对接头进行了剪切试验测试得到其力学性能,并对断口界面进行了分析。结果表明,接头界面典型组织结构为2507不锈钢/FeSn_2/Fe Sn/Sn(s,s)/Ti-Sn/K9玻璃。随着复合钎料中Ti含量的增加,接头界面中Ti-Sn化合物增多,且剪切强度升高。在钎焊温度为675℃,保温时间为10 min时,接头室温剪切强度最高达7. 3 MPa。钎焊接头断裂于K9玻璃并延伸至钎料中。展开更多
An optical sensing system was constructed to study the coating when joining ahtminium alloy to zinc-coated steel by MIG welding-brazing process. The results showed that the coating fused to form a liquid zinc film on ...An optical sensing system was constructed to study the coating when joining ahtminium alloy to zinc-coated steel by MIG welding-brazing process. The results showed that the coating fused to form a liquid zinc film on surface during process. The Al-Si filler metal reacted with the liquid zinc film to improve the spreadability of filler metal and thus a new method was established to join aluminium alloy and uncoated steel by depositing a mixed layer on steel surface.展开更多
基金Acknowledgements The research was sponsored by Project 50905045 supported by the National Natural Science Foundation of China and State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology.
文摘An optical sensing system was constructed to study the coating when joining ahtminium alloy to zinc-coated steel by MIG welding-brazing process. The results showed that the coating fused to form a liquid zinc film on surface during process. The Al-Si filler metal reacted with the liquid zinc film to improve the spreadability of filler metal and thus a new method was established to join aluminium alloy and uncoated steel by depositing a mixed layer on steel surface.