• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2015, Vol. 51 ›› Issue (12): 83-88.doi: 10.3901/JME.2015.12.083

• 材料科学与工程 • 上一篇    下一篇

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薄壁不锈钢管列置双TIG电弧高速焊接工艺

秦国梁1, 孟祥萌1, 付邦龙1, 杨成营2, 肖国栋2   

  1. 1.山东大学现代焊接技术研究所;
    2.山东朝日不锈钢有限公司
  • 出版日期:2015-06-20 发布日期:2015-06-20
  • 基金资助:
    山东大学自主创新资助项目(2012TS034)

High Speed Tandem TIG Welding of Thin-walled Stainless Steel Pipe

QIN Guoliang1, MENG Xiangmeng1, FU Banglong1, YANG Chengying2, XIAO Guodong2   

  1. 1.Institute of Advanced Welding Technology, Shandong University, Jinan 250061;
    2.Shandong Zhaori Stainless Steel Co., Ltd., Linqu 262600
  • Online:2015-06-20 Published:2015-06-20

摘要: 单钨极惰性气体保护焊(Tungsten inert gas, TIG)是目前工业用薄壁不锈钢管主要生产工艺,但其存在生产效率低的问题。针对高速TIG焊出现的驼峰焊道、咬边等焊缝表面成形缺陷产生的原因,提出列置双TIG电弧高效节能焊接新工艺。试验结果表明,采用双TIG电弧高效焊接新工艺,48 mm×1.2 mm和42 mm×1.5 mm两种规格的409L铁素体不锈钢管在获得良好焊缝成形的条件下焊接速度分别可达5.1 m/min和3.2 m/min;与单TIG焊接生产工艺相比,生产效率分别提高了240%和140%,能耗也分别降低44%和29%。两种规格铁素体不锈钢管膨胀率分别达到14.1%和33.7%,高于单TIG电弧焊的11.2%和21.4%,满足生产要求。分析表明,辅助TIG电弧加热主TIG电弧熔池后部堆积的液态金属,从热和力两方面延长熔池存在时间、促使液态金属回流填平主TIG电弧产生的熔池凹陷,从而有效抑制驼峰焊道和咬边的产生,在高速焊接条件下获得良好的焊缝成形,实现薄壁不锈钢管优质高效节能的焊接生产。

关键词: TIG), 高速焊接, 焊缝成形, 焊接效率, 双钨极惰性气体保护焊(Tungsten inert gas

Abstract: Single TIG welding is the key manufacturing technology of thin-walled stainless steel pipe for industrial application, but its production efficiency is lower. If the welding current and speed are simultaneously increased, the undercut and humping weld will appear. Based on the formation of weld appearance defects in high speed welding process, high speed tandem TIG welding process is proposed. The experimental results indicate that the welding speed of 409L ferritic stainless steel pipe with two specifications of 48 mm×1.2 mm and 42 mm×1.5 mm can reach up to 5.1 m/min and 3.2 m/min under the condition of good weld appearance, respectively. Compared with single TIG welding production, tandem TIG welding can improve the production efficiency by 240% and 140%, reduces energy consumption by 44% and 29%, respectively. The expansion ratios of the 409L ferritic stainless steel pipe with these two specifications reach 11.2% and 21.4%, which satisfy the requirement of production. The analysis of tandem TIG welding mechanism indicates that the assistant TIG arc following the main TIG arc, heats the liquid metal piled up at the rear of the molten pool formed by the main TIG arc, which prolong the existence time of liquid metal and improve its flowing backwards from both the thermal and force aspects. So the developed tandem TIG welding process can obtain the good weld appearance at high welding speed, which not only increase production efficiency, but also reduce the energy consumption.

Key words: high speed welding, tandem tungsten inert gas(TIG) welding, weld appearance, welding efficiency

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