Wang Ren, He Zhenxing, Kan Xiaoyang, Li Ke, Chen Fugang, Fu Juan, Zhao Yong
CRRC Qingdao Sifang Co., Ltd., Qingdao 266111, China.
Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology, Zhenjiang 212003, China.
Materials (Basel). 2023 Jan 4;16(2):502. doi: 10.3390/ma16020502.
Laser welding with filler wire was applied to Q345D in a narrow gap under ultrasonic assistance, and the dynamic characteristics of plasma were studied by high-speed imaging and spectral acquisition. The results showed that the plasma area decreased gradually with increasing distance between the ultrasonic loading position and welding seam. The electron density and temperature of the plasma with ultrasonic assistance were higher than those without ultrasound. The electron density was approximately 1010 cm, and the plasma temperature was approximately 40006000 K. Ultrasonic assisted laser wire filling welding can bring about cavitation effect and significantly reduce the porosity problem.
在超声辅助下,采用填丝激光焊接对Q345D钢进行窄间隙焊接,并通过高速成像和光谱采集研究了等离子体的动态特性。结果表明,随着超声加载位置与焊缝之间距离的增加,等离子体面积逐渐减小。有超声辅助时等离子体的电子密度和温度高于无超声时。电子密度约为1010厘米,等离子体温度约为40006000K。超声辅助激光填丝焊接可产生空化效应,显著减少气孔问题。