• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2020, Vol. 56 ›› Issue (6): 41-49.doi: 10.3901/JME.2020.06.041

• 铝合金与钢的焊接 • 上一篇    下一篇

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6061-T6铝合金/SPCC冷轧钢激光熔钎焊特性研究

张建勋, 江旭, 徐甄真, 张贵锋   

  1. 西安交通大学金属材料强度国家重点实验室 西安 710049
  • 收稿日期:2019-08-09 修回日期:2019-12-09 出版日期:2020-03-20 发布日期:2020-05-12
  • 作者简介:张建勋(通信作者),男,1958年出生,博士,教授,博士研究生导师。主要研究方向为先进材料接合与连接、智能焊接与再制造、焊接结构服役安全评价。E-mail:jxzhang@mail.xjtu.edu.cn;
    江旭,男,1993年出生。主要研究方向为激光焊接技术。E-mail:jiangxujx@stu.xjtu.edu.cn
  • 基金资助:
    国家自然科学基金资助项目(51875442)。

Study on Characteristics of Laser Welding-brazing of 6061 Aluminum Alloy to SPCC Cold Rolled Steel

ZHANG Jianxun, JIANG Xu, XU Zhenzhen, ZHANG Guifeng   

  1. State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049
  • Received:2019-08-09 Revised:2019-12-09 Online:2020-03-20 Published:2020-05-12

摘要: 针对2 mm厚的6061-T6铝合金与SPCC冷轧钢板,采取填丝激光熔钎焊方法,研究预涂钎剂、坡口角度、坡口形貌、钎料成分对熔钎焊接头的组织成分及力学性能的影响。结果表明,预涂Nocolok钎剂可以显著改善钎料的润湿性能;在钢母材侧预制60°坡口比预制45°坡口时的激光熔钎焊接头力学性能更好;当对钢母材预制60°坡口时,在激光功率、焊接速度、送丝速度、离焦量、光斑中心的偏移距离分别为3.1 kW、0.5 m/min、2 m/min、?8 mm、+0.6 mm时,以Al-Cu焊丝作为填充钎料,界面形成短须状的Fe-Al金属间化合物层,厚度在5~8 μm,Cu元素以置换Fe元素的方式固溶在Fe-Al金属间化合物相中改善其脆性,接头的平均及最大抗拉强度分别为147 MPa、159 MPa;以Al-Mg焊丝为填充钎料时,界面形成锯齿状的Fe-Al金属间化合物层,厚度在8~12 μm,Mg元素仅聚集在脆性相外侧,对Al-Fe脆性相的生长无明显抑制作用,在激光功率为3 kW时,接头的平均抗拉强度为118 MPa;以Al-Si焊丝为填充钎料时,界面形成小锯齿状的Fe-Al金属间化合物层,厚度在3~4.5 μm,Si元素将固溶在Fe-Al金属间化合物相中抑制其生长,在激光功率为3 kW时,接头的平均抗拉强度为129 MPa。

关键词: 铝钢接头, 激光熔钎焊, 预涂钎剂, 界面结构, 力学性能

Abstract: 2 mm-thick 6061-T6 aluminum alloy and SPCC cold-rolled steel plate are used to obtain aluminum steel composite joints with both fusion and brazing characteristics by means of wire filling laser brazing method. The influences of pre-coated flux, groove bevel angle, bevel morphology and solder composition on the microstructure and mechanical properties of brazing joint are studied. The results show that pre-coating flux can greatly improve wettability of filler metal. The mechanical properties of laser brazing joint are better when 60° groove is prefabricated on the side of steel base metal than when 45° groove is prefabricated.. When the prefabricate groove angle of steel material is 60°, and the laser power, welding speed, wire feeding speed, laser defocusing amount, offset center of the laser spot center are 3.1 kW, 0.5 m/min, 2 m/min, ?8 mm, +0.6 mm, respectively, with ER2319 Al-Cu filler metal, the average and maximum tensile strength of the joint are respectively 147 MPa and 159 MPa, the interface layer presents short whisker shape, the interface layer is 5-8 μm in thickness, the Cu element is dissolved in Al-Fe brittle phase by replacing Fe elements to reduce its brittleness. With ER5356 Al-Mg filler metal, the average tensile strength of the joint is 118 MPa when the laser power is 3 kW, the interface layer presents coarse saw tooth shape, and consists of FeAl2, Fe2Al5 and FeAl3 phase, the interface layer is 8-12 μm in thickness, the Mg element is gathered at the outside of brittle phase, and it has no obvious inhibitory effect on the growth of Al-Fe brittle phase; with ER4043 Al-Si filler metal, the average tensile strength of the joint is 129 MPa when the laser power is 3 kW, the interface layer presents small saw tooth shape, the interface layer is 3-4.5 μm in thickness, the Si element is dissolved in Al-Fe brittle phase to inhibit its growth.

Key words: aluminum-steel joint, laser welding-brazing, pre-coated flux, interface structure, mechanical property

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