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国家教育部博士点基金(20090131120027)

作品数:5 被引量:40H指数:4
相关作者:秦国梁苏玉虎王术军贾婧付邦龙更多>>
相关机构:山东大学山东现代职业学院中国石油天然气股份有限公司西部管道分公司更多>>
发文基金:国家教育部博士点基金国家自然科学基金更多>>
相关领域:金属学及工艺更多>>

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铝合金/镀锌钢板大光斑激光辅助MIG电弧熔-钎焊接工艺
针对当前铝/钢异种金属焊接难点以及二者在物理化学性能上差异,提出了大光斑激光辅助MIG电弧复合热源熔钎焊接工艺,成功实现了1.2mm厚的5A02铝合金板与1.5mm厚镀锌钢板的优质、高效连接,并研究了焊接工艺参数对焊缝成...
秦国梁雷振苏玉虎王术军林尚扬
关键词:异种材料连接焊接热输入复合热源焊接焊缝成形
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铝合金/钢异种金属熔-钎焊技术研究进展被引量:5
2011年
文中分析了铝及铝合金与钢异种金属焊接时存在的问题,认为铝合金/钢熔-钎焊接是最适合铝合金/钢复合结构制造的焊接技术。介绍了熔-钎焊接的概念及特点,综述了国内外激光熔-钎焊、TIG熔-钎焊、MIG熔-钎焊、CMT熔-钎焊以及激光+MIG电弧复合熔-钎焊等焊接工艺方法在铝合金与钢异种金属连接中的研究现状,并对比了各种工艺方法的优缺点。最后指出,合适的填充材料和钎剂的开发以及焊接热输入的精确控制是实现铝及铝合金与钢异种金属优质高效连接的关键。
苏玉虎秦国梁位延堂
关键词:熔-钎焊接异种金属焊接
铝合金/镀锌钢板P-MIG熔钎焊接头组织与性能
以AlSi5焊丝为填充材料,采用脉冲MIG焊进行了6013-T4铝合金/镀锌钢板的熔钎焊工艺试验,研究了焊接热输入对焊缝成形的影响;用金相显微镜、扫描电镜(SEM)、能谱分析(EDS)和拉伸试验对熔钎焊接头的组织及性能进...
苏玉虎秦国梁王术军
关键词:铝合金镀锌钢板
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冶金因素对铝/钢异种金属熔-钎焊接性能影响的研究进展
2012年
铝/钢异种金属熔化焊接工艺性差的主要原因是两者之间热物理性能和化学性能差异大,两者之间极易反应生成脆性的金属间化合物,严重降低了焊接质量和接头使用性能。阐述了填充材料中的合金元素以及钎剂等焊接冶金因素在铝合金和钢异种金属熔-钎焊接中的作用和影响,分析了合金元素改善铝合金/钢异种金属熔-钎焊的性能,以及钎剂改善铝合金在钢表面的铺展性。最后指出,开发合适的填充材料和钎剂是铝/钢熔-钎焊的关键冶金措施。
王术军苏玉虎秦国梁颜怀永
关键词:异种金属焊接
铝合金激光焊接技术的研究进展被引量:20
2013年
由于铝合金导热性强、电离能低、对激光的反射率高等特点,激光焊接中存在着气孔、焊接热裂纹、接头软化、焊缝成形差等问题,在研究过程中开发出了活性剂激光焊、双光束激光焊、激光填丝焊、激光填粉焊、激光+电弧复合焊、激光+电弧双面焊、电磁强化激光焊等工艺。在阐述铝合金激光加工中存在的问题及其原因的基础上,重点介绍了这些工艺的特点和原理,指出了各工艺的优势及不足,对铝合金激光焊接技术的研究进展进行了概述。
付邦龙孟祥萌秦国梁贾婧
关键词:铝合金激光焊
Microstructures and properties of welded joint of aluminum alloy to galvanized steel by Nd:YAG laser + MIG arc hybrid brazing-fusion welding被引量:5
2014年
According to the differences in melting point between aluminum alloy and steel, 6013-T4 aluminum alloy was joined to galvanized steel by large spot Nd:YAG laser + MIG arc hybrid brazing-fusion welding with ER4043(AlSi5) filler wire. The microstructures and mechanical properties of the brazed-fusion welded joint were investigated. The joint is divided into two parts of fusion weld and brazed seam. There is a zinc-rich zone at fusion weld toe, which consists of α(Al)-Zn solid solution and Al-Zn eutectic. The brazed seam is the Fe-Al intermetallic compounds (IMCs) layer of 2-4μm in thickness, and the IMCs include FeAl2, Fe2Al5 and Fe4Al13. FeAl2 and Fe2Al5 are located in the compact reaction layer near the steel side, and Fe4Al13 with tongue shape or sawtooth shape grows towards the fusion weld. The tensile strength of the joint firstly increases and then decreases as the welding current and laser power increase, the highest tensile strength can be up to 247.3 MPa, and the fracture usually occurs at fusion zone of the fusion weld. The hardness is the highest at the brazed seam because of hard Fe-Al IMCs, and gradually decreases along the fusion weld and galvanized steel, respectively.
秦国梁苏玉虎王术军
Laser-MIG Arc Hybrid Brazing-Fusion Welding of Al Alloy to Galvanized Steel with Different Filler Metals被引量:10
2013年
Aluminum alloy plates were joined to galvanized steel sheets with lap joint by laser-MIG arc hybrid brazingfusion welding with AlSiS, AlSi12, AlMg5 filler wires, respectively. The influences of Si and Mg on the microstructure and mechanical properties of the brazed-fusion welded joint were studied. The increase of Si element in the fusion weld can make the grain refined, and increase the microhardness of the fusion weld. Therefore, the microhardness in fusion weld made from AlSi12 and AlSi5 filler wires can be up to 98.4 HV0.01 and 96.8 HV0.01, which is higher than that from AlMg5 filler wire of 70.4 HV0.01. The highest tensile strength can reach 178.9 MPa made with AlMg5 filler wire. The tensile strength is 172.43 MPa made with AlSi5 filler wire. However, the lowest tensile strength is 144 MPa made with AlSi12 filler wire. The average thicknesses of the intermetallic compounds (IMCs) layer with AlSiS, AlSi12, AlMg5 filler wires are 1.49-2.64 #m. The IMCs layer made from AlSi5, AlSi12 filler wires are identified as FeAl2, Fe2Als, Fe4Al13 and Al0.sFesSio.5, that from AlMg5 filler wire are identified as FeAl2, Fe2Al5 and Fe4Al13.
Shujun WANGGuoliang QINYuhu SU
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