首页> 外文期刊>Advances in materials science and engineering >Research on Heat Source Model and Weld Profile for Fiber Laser Welding of A304 Stainless Steel Thin Sheet
【24h】

Research on Heat Source Model and Weld Profile for Fiber Laser Welding of A304 Stainless Steel Thin Sheet

机译:A304不锈钢薄板纤维激光焊接的热源模型和焊接轮廓研究

获取原文
       

摘要

A heat source model is the key issue for laser welding simulation. The Gaussian heat source model is not suitable to match the actual laser weld profile accurately. Furthermore, fiber lasers are widely recognized to result in good-quality laser beam output, a narrower weld zone, less distortion, and high process efficiency, compared with other types of lasers (such as CO2, Nd  YAG, and diode lasers). At present, there are few heat source models for fiber laser welding. Most of researchers evaluate the weld profile only by the bead width and depth of penetration, which is not suitable for the laser keyhole welding nail-like profile. This paper reports an experimental study and FEA simulation of fiber laser butt welding on 1 mm thick A304 stainless steel. A new heat source model (cylindrical and cylindrical) is established to match the actual weld profile using Marc and Fortran software. Four bead geometry parameters (penetration depth, bead width, waist width, and depth of the waist) are used to compare between the experimental and simulation results. The results show that the heat source model of cylindrical and cylindrical can match the actual shape of the fiber laser welding feasibly. The error range of the penetration depth, bead width, waist width, and depth of the waist between experimental and simulation results is about 4.1 ± 1.6%, 2.9 ± 2.0%, 13.6 ± 7.4/%, and 18.3 ± 8.0%, respectively. In addition, it is found that the depth of penetration is more sensitive to laser power rather than bead width, waist width, and depth of the waist. Welding speed has a similar influence on the depth of penetration, weld width, waist width, and depth of the waist.
机译:热源模型是激光焊接仿真的关键问题。高斯热源模型不适合精确匹配实际的激光焊接轮廓。此外,与其他类型的激光器(例如CO2,Nd YAG和二极管激光器)相比,光纤激光器被广泛认为可以产生高质量的激光束输出,更窄的焊接区域,更少的变形以及更高的处理效率。目前,用于光纤激光焊接的热源模型很少。大多数研究人员仅通过焊缝宽度和熔深来评估焊缝轮廓,这不适用于激光锁孔焊钉状轮廓。本文报道了在1 mm厚的A304不锈钢上进行光纤激光对接焊的实验研究和有限元模拟。使用Marc和Fortran软件建立了新的热源模型(圆柱和圆柱),以匹配实际的焊接轮廓。四个珠子几何参数(穿透深度,珠子宽度,腰围宽度和腰围深度)用于比较实验结果和模拟结果。结果表明,圆柱和圆柱的热源模型可以很好地匹配光纤激光焊接的实际形状。实验结果和模拟结果之间的穿透深度,珠子宽度,腰围宽度和腰部深度的误差范围分别为约4.1±1.0%,2.9±2.0%,13.6±7.4 /%和18.3±8.0%。另外,发现穿透深度对激光功率更敏感,而不是珠子宽度,腰围宽度和腰部深度。焊接速度对熔深,焊缝宽度,腰围宽度和腰围深度具有相似的影响。

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