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单脉冲不等厚22MnB5/DP590电阻点焊接头的力学性能研究

于永梅 李治国 娄国栋 荆毅

于永梅, 李治国, 娄国栋, 荆毅. 单脉冲不等厚22MnB5/DP590电阻点焊接头的力学性能研究[J]. 钢铁钒钛, 2024, 45(4): 181-188. doi: 10.7513/j.issn.1004-7638.2024.04.026
引用本文: 于永梅, 李治国, 娄国栋, 荆毅. 单脉冲不等厚22MnB5/DP590电阻点焊接头的力学性能研究[J]. 钢铁钒钛, 2024, 45(4): 181-188. doi: 10.7513/j.issn.1004-7638.2024.04.026
Yu Yongmei, Li Zhiguo, Lou Guodong, Jing Yi. Study on mechanical properties of resistance spot welded joints with single pulse unequal thickness of 22MnB5/DP590[J]. IRON STEEL VANADIUM TITANIUM, 2024, 45(4): 181-188. doi: 10.7513/j.issn.1004-7638.2024.04.026
Citation: Yu Yongmei, Li Zhiguo, Lou Guodong, Jing Yi. Study on mechanical properties of resistance spot welded joints with single pulse unequal thickness of 22MnB5/DP590[J]. IRON STEEL VANADIUM TITANIUM, 2024, 45(4): 181-188. doi: 10.7513/j.issn.1004-7638.2024.04.026

单脉冲不等厚22MnB5/DP590电阻点焊接头的力学性能研究

doi: 10.7513/j.issn.1004-7638.2024.04.026
基金项目: 国家自然科学基金面上项目(51974085)。
详细信息
    作者简介:

    于永梅,1974年出生,女,汉族,辽宁沈阳人,博士,副教授,研究方向:金属材料组织与性能研究,E-mail: 3234547867@qq.com

  • 中图分类号: TG457

Study on mechanical properties of resistance spot welded joints with single pulse unequal thickness of 22MnB5/DP590

  • 摘要: 采用单脉冲电阻点焊连接技术,研究不同的焊接电流和焊接时间条件下不等厚22MnB5/DP590点焊接头截面特征和拉伸性能,分析点焊接头显微硬度的变化规律。结果表明:焊接电流对母材焊透率和熔核厚度的影响不大。随焊接电流的增加,熔核向较厚DP590侧方向偏移,接头熔核直径和拉剪力增加。与焊接电流相比,焊接时间的增加对接头压痕率和熔核偏移量的影响严重;随焊接时间的增加,母材的焊透率和熔核厚度减小,焊接时间为1000 ms时熔核直径减小,而拉剪力一直增加。点焊接头的显微硬度值由高到低分别为22MnB5侧热影响区→熔核区→DP590侧热影响区。在拉剪力作用下,接头拉伸断裂方式有界面断裂、部分界面断裂和熔核拔出断裂。并由此得出结论:在电极压力为3.8 kN的条件下,不等厚DP590/22MnB5的最佳点焊工艺为焊接电流为8.5 kA,焊接时间为160 ms。
  • 图  1  拉伸试样几何尺寸(单位:mm)

    Figure  1.  Geometrical parameters of tensile specimens

    图  2  显微硬度测试示意

    Figure  2.  Diagram of microhardness test sampling

    图  3  点焊接头的截面特征

    Figure  3.  Schematic diagram of the cross-sectional feature of the weld

    图  4  焊接电流对接头截面尺寸的影响

    Figure  4.  Influence of welding current on section size of joint

    图  5  焊接时间对接头截面尺寸的影响

    Figure  5.  Influence of welding time on section size of joint

    图  6  DP590/22MnB5点焊接头显微硬度分布

    Figure  6.  Microhardness distribution of DP590/22MnB5 spot welded joint

    图  7  焊接电流对接头拉伸性能的影响

    Figure  7.  Influence of welding current on tensile properties of joints

    图  8  焊接时间对接头拉伸性能的影响

    Figure  8.  Influence of welding time on tensile properties of joints

    图  9  界面断裂的拉伸曲线和断口形貌

    Figure  9.  Tensile curve and fracture morphology of interface fracture

    图  10  部分界面断裂的拉伸曲线和断口形貌

    Figure  10.  Tensile curves and fracture morphologies of partial interfacial fractures

    图  11  熔核拔出断裂的拉伸曲线和断口形貌

    Figure  11.  Tensile curve and fracture morphology of nucleus pull-out fracture

    表  1  DP590和22MnB5的化学成分

    Table  1.   The chemical compositions of DP590 and 22MnB5 steel %

    材料CSiMnPSCrBAlTiNFe
    DP5900.060.311.230.020.0040.550.029Bal.
    22MnB50.220.231.20.0130.0010.20.00270.040.0280.004Bal.
    下载: 导出CSV

    表  2  单脉冲点焊工艺参数

    Table  2.   Welding parameters of single pulse spot welding process

    编号焊接时间/ms焊接电流/kA电极压力/kN保持时间/ms
    116073.8400
    21607.53.8400
    316083.8400
    41608.53.8400
    53207.53.8400
    65007.53.8400
    710007.53.8400
    下载: 导出CSV
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  • 收稿日期:  2023-05-23
  • 刊出日期:  2024-08-30

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