New methods of resistance spot welding using reference waveforms of welding power

被引:0
作者
Jiyoung Yu
机构
[1] Hyundai Steel Company,Technical Research Center
来源
International Journal of Precision Engineering and Manufacturing | 2016年 / 17卷
关键词
High strength steel; Reference welding; Resistance spot welding; Weldability; Welding power control; Welding signal;
D O I
暂无
中图分类号
学科分类号
摘要
The use of high strength steels in car bodies has increased gradually in recent years, contributing to lighter weight vehicles. In general, the resistance spot weldability of high strength steels is poor when compared to that of low-carbon steels due to a number of factors including narrow welding range (weld lobe), irregular occurrence of expulsion, high resistivity of base metals, and zinc coating. To improve the weldability of high strength steels, technologies such as adaptive resistance spot welding and optimization of welding conditions have been developed and applied within the automotive industry. This study focuses on developing two methods of resistance spot welding with the aim of improving the weldability of high strength steels. The first method is reference welding, which uses the reference power waveforms obtained from preliminary welding. The second is modified reference welding, which uses modified power waveform from the reference welding method. The features and effects of these welding methods were evaluated through a tensile shear test, analysis of welding signals, and an investigation into the frequency of expulsion. Both welding methods showed high tensile shear strength results and reductions in expulsion over a wide variety of different steel types including GI coated steels.
引用
收藏
页码:1313 / 1321
页数:8
相关论文
共 74 条
  • [1] Oikawa H.(2007)Resistance Spot Weldability of High Strength Steel Sheets for Automobiles and the Quality Assurance of Joints Welding in the World 51 7-18
  • [2] Murayama G.(2013)Spot Welding of Aluminum and Cast Iron by Friction Bit Joining Int. J. Precis. Eng. Manuf. 14 1003-1006
  • [3] Hiwatashi S.(2010)Investigations on the Weldability of High-Strength Steels Sheet to Cylindrical Tube Single-Sided Spot Welding The International Journal of Advanced Manufacturing Technology 49 513-518
  • [4] Matsuyama K.(2012)The Effect of Welding Parameters on Fracture Toughness of Resistance Spot-Welded Galvanized DP600 Automotive Steel Sheets The International Journal of Advanced Manufacturing Technology 58 1043-1050
  • [5] Miles M.(2003)Developments of Ultra High-Strength Cold-Rolled Steel Sheets for Automotive Use Nippon Steel Technical Report, No. 88 13-15
  • [6] Hong S.-T.(2005)The Effect of Spot Weld Failure on Dynamic Vehicle Performance Sound and Vibration 39 16-25
  • [7] Woodward C.(2012)Effect of Welding Current on Energy Absorption of AISI 304 Resistance Spot Welds Research Journal of Applied Sciences, Engineering and Technology 4 2911-2914
  • [8] Jeong Y.-H.(2007)Effect of Weld Nugget Size on Overload Failure Mode of Resistance Spot Welds Science and Technology of Welding & Joining 12 217-225
  • [9] Yang H.(2006)Resistance Spot Welding of Coated High-Strength Dual-Phase Steels Welding Journal 85 31-37
  • [10] Lai X.(2008)Microstructure and Mechanical Properties of Resistance Spot Welded Advanced High Strength Steels Materials Transactions 49 1629-1637