首页> 外文期刊>Journal of Laser Applications >Effects of different welding process on the electronic temperature of plasma and weld shape during laser-MIG hybrid welding of A7N01P-T4 aluminum alloy
【24h】

Effects of different welding process on the electronic temperature of plasma and weld shape during laser-MIG hybrid welding of A7N01P-T4 aluminum alloy

机译:A7N01P-T4铝合金激光-MIG混合焊接过程中不同焊接工艺对等离子体电子温度和焊缝形状的影响

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, the authors investigated on the spectral characteristics of A7N01P-T4 aluminum alloy in MIG, laser, and laser-MIG hybrid welding; calculated the electronic temperature of the welding plasma; and analyzed the difference of three kinds of welding processes with the weld shape. The influence of the oxide film on the spectral characteristics and weld shape of the laser-MIG plasma was investigated. The authors made further research of different welding parameters ( laser power, wire feeding speed, and shielding gas flow) on the spectral characteristics of laser-MIG plasma and the weld shape, and then explained the relationship between the plasma and the weld shape. The results are indicated: when the laser power increased from 1 to 4 kW, the spectral intensity, electronic temperature, weld penetration, and weld width increased. When the wire feeding speed increased from 9 to 18m/min, the spectral intensity, the electronic temperature, weld penetration, and weld width increased. When the shielding gas flow increased from 20 to 40 l/min, the plasma temperature, the penetration depth, and weld width increased. When the protective gas flow increased from 40 to 50 l/min, the electronic temperature, weld penetration, and weld width all decreased, but the argon spectrum intensity and the number of argon atom both increased. In the absence of oxide film, the laser-MIG plasma temperature, the weld penetration, and weld width increased. (C) 2018 Laser Institute of America.
机译:本文研究了A7N01P-T4铝合金在MIG,激光和激光-MIG混合焊接中的光谱特性。计算焊接等离子体的电子温度;并分析了三种焊接工艺随焊缝形状的差异。研究了氧化膜对激光-MIG等离子体的光谱特性和焊接形状的影响。作者进一步研究了不同焊接参数(激光功率,送丝速度和保护气体流量)对激光-MIG等离子体的光谱特征和焊缝形状,然后解释了等离子体与焊缝形状之间的关系。结果表明:当激光功率从1 kW增加到4 kW时,光谱强度,电子温度,焊缝熔深和焊缝宽度都会增加。当送丝速度从9m / min增加到18m / min时,光谱强度,电子温度,焊缝熔深和焊缝宽度都会增加。当保护气体流量从20 l / min增加到40 l / min时,等离子温度,熔深和焊缝宽度都会增加。当保护气体流量从40 l / min增加到50 l / min时,电子温度,焊缝熔深和焊缝宽度均降低,但氩光谱强度和氩原子数均增加。在没有氧化膜的情况下,激光-MIG等离子体温度,焊缝熔深和焊缝宽度都会增加。 (C)2018美国激光学会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号