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激光熔-钎焊镀锌钢/铝异种金属的接头性能影响因素及改善措施 被引量:9
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作者 李晓靓 于治水 +4 位作者 张培磊 李绍伟 仇丁丁 刘晓鹏 马凯 《材料导报》 EI CAS CSCD 北大核心 2015年第5期123-126,144,共5页
激光熔-钎焊是实现镀锌钢板/铝合金异种金属理想连接方式的重要焊接方法。对于焊接多材料车身结构,镀锌钢-铝激光异种金属焊接工艺可提供重要的技术参考。在介绍激光熔-钎焊方法优异性的基础上,综述了影响焊接接头性能的主要因素,并总... 激光熔-钎焊是实现镀锌钢板/铝合金异种金属理想连接方式的重要焊接方法。对于焊接多材料车身结构,镀锌钢-铝激光异种金属焊接工艺可提供重要的技术参考。在介绍激光熔-钎焊方法优异性的基础上,综述了影响焊接接头性能的主要因素,并总结了改善接头性能采取的优化措施。 展开更多
关键词 镀锌钢 激光熔-钎焊 接头性能 改善措施
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5052铝/镀锌钢Nd:YAG激光熔-钎焊 被引量:5
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作者 石岩 邝玉林 +1 位作者 刘佳 张宏 《应用激光》 CSCD 北大核心 2012年第6期497-500,共4页
利用Nd∶YAG激光器实现了5052铝/镀锌钢异种金属板材之间的熔-钎焊连接,并对焊缝成形、接头性能及微观形貌做了分析。分析结果表明,合适的热输入能够有效实现5052铝/镀锌钢异种金属之间的熔-钎焊连接,焊接接头中铝合金母材发生熔化与镀... 利用Nd∶YAG激光器实现了5052铝/镀锌钢异种金属板材之间的熔-钎焊连接,并对焊缝成形、接头性能及微观形貌做了分析。分析结果表明,合适的热输入能够有效实现5052铝/镀锌钢异种金属之间的熔-钎焊连接,焊接接头中铝合金母材发生熔化与镀锌钢形成钎焊连接,镀锌钢母材并未发生熔化;焊接接头的抗拉强度为128 N/mm;微观形貌分析表明,在焊缝钎接界面处生成了一层薄金属间化合物层,金属间化合物层的厚度为3~4μm。 展开更多
关键词 铝合金 镀锌钢 异种金属 激光熔-钎焊
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钛/铝异种合金激光-电弧复合熔钎焊接头残余应力数值计算 被引量:1
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作者 王伟 王泽明 +4 位作者 商乔 朱宗涛 王治国 郑勇 王世忠 《焊接技术》 2020年第11期24-28,I0011,I0012,共7页
采用Abaqus有限元分析软件进行了Ti-6A1-4V钛合金与6061铝合金的激光-电弧复合熔钎焊接头残余应力的数值计算,结合X射线衍射法对计算结果进行验证。结果表明,钛合金侧及铝合金侧Mises等效残余应力呈现非对称分布,焊缝中心处应力值最大;... 采用Abaqus有限元分析软件进行了Ti-6A1-4V钛合金与6061铝合金的激光-电弧复合熔钎焊接头残余应力的数值计算,结合X射线衍射法对计算结果进行验证。结果表明,钛合金侧及铝合金侧Mises等效残余应力呈现非对称分布,焊缝中心处应力值最大;横向残余应力沿焊缝长度方向表现为"两端受压,中间受拉"的分布特征,端部压应力峰值接近200 MPa;铝合金侧纵向残余应力分布存在拉应力向压应力转变的过渡区域;正反面余高处存在应力集中现象,试板焊后出现翘曲变形。 展开更多
关键词 钛铝异种合金 激光-电弧复合钎焊 数值模拟 残余应力
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Residual stress and welding distortion of Al/steel butt joint by arc-assisted laser welding-brazing 被引量:11
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作者 Chun-ling LI Ding FAN +1 位作者 Xiao-quan YU Jian-kang HUANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第4期692-700,共9页
The thermo-elastic.plastic finite element method(FEM)is used to simulate the thermo-mechanical behavior of Al/steel tungsten inert gas(TIG)arc-assisted laser welding-brazing(A-LWB)butt joint.The influence of material ... The thermo-elastic.plastic finite element method(FEM)is used to simulate the thermo-mechanical behavior of Al/steel tungsten inert gas(TIG)arc-assisted laser welding-brazing(A-LWB)butt joint.The influence of material nonlinearity,geometrical nonlinearity and work hardening on the welding process is studied,and the differences in the welding temperature field,residual stress and welding distortion by A-LWB and by single laser welding-brazing(SLWB)are analyzed.The results show that the thermal cycle,residual stress distribution and welding distortion by the numerical simulation are in good agreement with the measured data by experiments,which verifies the effectiveness of FEM.Compared with the SLWB,A-LWB can make the high-temperature distribution zone of weld in width direction wider,decrease the transverse tensile stress in the weld and reduce the distribution range of longitudinal tensile stress.And the welding deformation also decreases to some extent. 展开更多
关键词 arc-assisted laser welding-brazing(A-LWB) Al/steel finite element method(FEM) temperature field residual stress welding distortion
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Wettability, microstructure and properties of 6061 aluminum alloy/304 stainless steel butt joint achieved by laser-metal inert-gas hybrid welding-brazing 被引量:7
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作者 Jun-yu XUE Yuan-xing LI +1 位作者 Hui CHEN Zong-tao ZHU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第10期1938-1946,共9页
Laser-metal inert-gas(MIG)hybrid welding-brazing was applied to the butt joint of 6061-T6 aluminum alloy and 304 stainless steel.The microstructure and mechanical properties of the joint were studied.An excellent join... Laser-metal inert-gas(MIG)hybrid welding-brazing was applied to the butt joint of 6061-T6 aluminum alloy and 304 stainless steel.The microstructure and mechanical properties of the joint were studied.An excellent joint-section shape was achieved from good wettability on both sides of the stainless steel.Scanning electron microscopy,energy-dispersive spectroscopy and X-ray diffractometry indicated an intermetallic compound(IMC)layer at the 6061-T6/304 interface.The IMC thickness was controlled to be^2μm,which was attributed to the advantage of the laser-MIG hybrid method.Fe3Al dominated in the IMC layer at the interface between the stainless steel and the back reinforcement.The IMC layer in the remaining regions consisted mainly of Fe4Al13.A thinner IMC layer and better wettability on both sides of the stainless steel were obtained,because of the optimized energy distribution from a combination of a laser beam with a MIG arc.The average tensile strength of the joint with reinforcement using laser-MIG hybrid process was improved to be 174 MPa(60%of the 6061-T6 tensile strength),which was significantly higher than that of the joint by traditional MIG process. 展开更多
关键词 WELDING-BRAZING laser-metal inert-gas hybrid welding butt joint microstructure
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