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Numerical Simulation on Nugget Formation and Evolution in Spot Welding of Aluminum Alloy 被引量:1

Numerical Simulation on Nugget Formation and Evolution in Spot Welding of Aluminum Alloy
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摘要 With the squeeze of electrode tips, the oxide film on aluminum (Al) alloy surface is broken and numbers of micro-gaps are formed randomly. The micro-gaps act as conducting spots at the beginning of welding, so the contact resistance is extremely high and unstable in spot welding of Al alloy. In this paper, a new contact resistance model is adopted to simulate the nugget forming process. This model describes the random distribution characteristic of conducting spots. The simulation results indicate that, within the first 5 ms of welding current (AC, 50 Hz), the temperature distribution at the workpieces interface is seriously irregular. In addition, the nugget does not nucleate from the weld center and grow continuously, however, it nucleates randomly from several points almost instantaneously and then merges into an entity quickly. Experimental results agreed with the numerical simulation. With the squeeze of electrode tips, the oxide film on aluminum (Al) alloy surface is broken and numbers of micro-gaps are formed randomly. The micro-gaps act as conducting spots at the beginning of welding, so the contact resistance is extremely high and unstable in spot welding of Al alloy. In this paper, a new contact resistance model is adopted to simulate the nugget forming process. This model describes the random distribution characteristic of conducting spots. The simulation results indicate that, within the first 5 ms of welding current (AC, 50 Hz), the temperature distribution at the workpieces interface is seriously irregular. In addition, the nugget does not nucleate from the weld center and grow continuously, however, it nucleates randomly from several points almost instantaneously and then merges into an entity quickly. Experimental results agreed with the numerical simulation.
出处 《Transactions of Tianjin University》 EI CAS 2011年第1期28-32,共5页 天津大学学报(英文版)
基金 Supported by National Natural Science Foundation of China (No. 50175080)
关键词 aluminum alloy spot welding NUGGET oxide film contact resistance 铝合金点焊金块氧化物电影接触抵抗
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  • 1Senkara J, Zhang H. Cracking in spot welding aluminum alloy AA5754[J]. Welding Journal, 2000, 79(7) : 194s- 201s.
  • 2Thornton P H, Krause A R, Davies R G. Aluminum spot weld[J]. Welding Journal, 1996, 75 (3) : 101s-108s.
  • 3Cho Y J, Chang I S, Lee H B. Single-sided resistance spot welding for auto body assembly[J]. Welding Journal, 2006, 85 (8) : 26-29.
  • 4Han Z. A heat transfer study for resistance spot welding[J]. Welding Journal, 1989, 68 (9) : 363s-371s.
  • 5Rogeon P, Carte P, Costa Jet al. Characterization of elec- trical contact conditions in spot welding assemblies[J]. Journal of Materials Processing Technology, 2008, 195 (1- 3) :117-124.
  • 6Xu L, Khan J A. Nugget growth model for aluminum alloys during resistance spot welding [J]. Welding Journal, 1999, 78 (11) : 367s-372s.
  • 7Gould J E. Examination of nugget development during spot welding, using both experimental and analytical tech- niques[J]. Welding Journal, 1987, 66(1) : 1s-10s.
  • 8Huh H, Kang W J. Electro-thermal analysis of electric re- sistance spot welding processes by a 3-D finite element method [J]. Journal of Materials Processing Technology, 1997, 36(1): 671-677.
  • 9Cheng Fangjie. Study on the Contact Resistance and the Wear of Electrodes in Spot Welding of Aluminum Al- loy[D]. School of Material Science and Engineering, Tianjin University, Tianjin, 2002.46-49 (in Chinese).

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