首页> 外文会议>International Symposium on Chemical Engineering and Material Properties >Detection of Seam Offset Based on Molten Pool Characteristics during High-power Fiber Laser Welding
【24h】

Detection of Seam Offset Based on Molten Pool Characteristics during High-power Fiber Laser Welding

机译:基于熔融池特性的接缝偏移检测高功率光纤激光焊接

获取原文

摘要

Laser welding includes the heat conduction welding and the deep penetration welding. Deep penetration welding can not only penetrate the material completely, but also can vaporize the material. An important phenomenon during deep penetration welding is that molten pool in the weldment will appear a keyhole. The formation of the keyhole leads to a deep penetration weld with a high aspect ratio and this is the most advantageous feature of welding by high-energy-density beams. Small focus wandering off weld seam may result in lack of penetration or unacceptable welds, and largely reduce heating efficiency. In a fiber laser butt-joint welding of Type 304 austenitic stainless steel plate with a high power 6kW continuous wave fiber laser, an infrared sensitive high-speed video camera was used to capture the dynamic images of the molten pools. The configurations of molten pools were analyzed through image processing techniques such as median filtering, partial Otsu threshold segmentation and Canny edge to obtain the edge of keyholes and molten pools. The circular degree and the area of keyholes and the width and average gray of molten pools were defined as characteristic parameters to reflect the seam offset between the laser beam and the weld center. By analyzing the change of characteristic parameters during welding process, it was found that these parameters were related to the seam offset. Welding experimental results and analysis of characteristic parameters confirmed that the seam offset could be monitored and distinguished by molten pools configuration during high-power fiber laser welding.
机译:激光焊接包括导热焊接和深渗透焊接。深渗透焊接不仅可以完全穿透材料,而且也可以蒸发材料。深度渗透焊接期间的一个重要现象是焊接中的熔池将出现钥匙孔。钥匙孔的形成导致具有高纵横比的深渗透焊缝,并且这是通过高能密度梁焊接的最有利特征。小型聚焦脱离焊缝接缝可能导致缺渗透或不可接受的焊缝,并且大大降低了加热效率。在具有高功率6KW连续波光纤激光器的304型奥氏体不锈钢板的光纤激光对接接头焊接中,使用红外敏感的高速摄像机捕获熔池的动态图像。通过图像处理技术(如中值滤波,部分OTSU阈值分割和罐头边缘)分析熔池的配置,以获得钥匙孔和熔池的边缘。孔洞的圆形度和熔池的宽度和平均灰度被定义为特征参数,以反射激光束和焊接中心之间的接缝偏移。通过分析焊接过程中特征参数的变化,发现这些参数与接缝偏移有关。焊接实验结果和特征参数分析证实,在大功率光纤激光焊接期间,可以通过熔池配置监测和区分接缝偏移。

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