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镀锌钢表面状态对镁/镀锌钢MIG焊焊接性的影响
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作者 尚作先 汪晓勇 +2 位作者 彭红兵 白妮 张天顺 《金属加工(热加工)》 2024年第7期22-28,共7页
镁/镀锌钢复合结构件设计和使用可有效降低结构和车身质量,是汽车轻量化发展的热门研究方向之一。为了揭示镁/镀锌钢MIG焊中镀锌层的作用,通过对比未处理、硝酸腐蚀、机械打磨3种镀锌钢表面状态所得MIG焊接头的焊缝成形、界面组织、显... 镁/镀锌钢复合结构件设计和使用可有效降低结构和车身质量,是汽车轻量化发展的热门研究方向之一。为了揭示镁/镀锌钢MIG焊中镀锌层的作用,通过对比未处理、硝酸腐蚀、机械打磨3种镀锌钢表面状态所得MIG焊接头的焊缝成形、界面组织、显微硬度和耐蚀性,开展了镀锌钢表面状态对镁/镀锌钢MIG焊焊接性的影响的研究。研究结果表明:镀锌层的存在有利于改善液态镁合金在钢表面的润湿铺展性,有利于界面区的氧化物夹杂的溢出,促进界面反应进行和界面过渡层的形成,且部分Zn元素可进入焊缝区参与焊缝合金化,因此镀锌钢未处理时所得接头焊缝成形美观,界面过渡层均匀连续,无焊接缺陷产生,焊缝区硬度升高,界面区耐蚀性最佳。在此基础上建立了镁/镀锌钢MIG焊中镀锌层的作用模型,可为揭示镁/镀锌钢焊接机理、改善镁/镀锌钢焊接性,以及提高镁/镀锌钢焊接质量提供一定的理论支持,具有重要的研究意义和应用价值。 展开更多
关键词 表面状态 镁/镀锌钢 MIG焊 焊接性
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Effect of laser power on microstructure and mechanical properties of laser heat conduction lap welded joint between AZ31B magnesium alloy and DP780 galvanized steel 被引量:1
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作者 GAO Ju-ming WANG Dan +2 位作者 ZHUANG Dong-dong ZHAO Xin-yi LEI Yu-cheng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3463-3475,共13页
In this work, laser heat conduction lap welding(LHCLW) of AZ31B magnesium alloy sheet and DP780galvanized steel sheet was carried out by the defocused laser beam. The effects of laser power on the microstructure and m... In this work, laser heat conduction lap welding(LHCLW) of AZ31B magnesium alloy sheet and DP780galvanized steel sheet was carried out by the defocused laser beam. The effects of laser power on the microstructure and mechanical properties of the joint were studied. The pros and cons of the joint were identified and evaluated by measuring the tensile shear strength, microhardness and microstructure observation. The formation mechanism of various phases at the Mg/steel interface was analyzed. The results indicated that the galvanized layer could promote the metallurgical bonding between magnesium alloy and steel by improving the diffusion ability of molten magnesium alloy at the steel interface and reacting with Mg, so as to enhance the strength of the joint. A continuous dense layered eutectic structure(α-Mg+MgZn) was formed at the interface of the joint, while MgZn_(2)and MgZn phase was formed at the weld edge zone and heat affective zone(HAZ), whereas no reaction layer was generated between the uncoated steel and magnesium alloy. A sound joint could be obtained at 2.5 kW, and the corresponding tensile shear strength reached the maximum value of 42.9 N/mm. The strength was slightly reduced at 2.6 kW due to the existence of microcracks in the eutectic reaction layer. 展开更多
关键词 AZ31B magnesium alloy DP780 galvanized steel laser heat conduction lap welding laser power microstructure mechanical properties
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