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孟宣宣, 王春明, 胡席远. CO2激光拼焊的光与声信号分析[J]. 焊接学报, 2011, (7): 95-99.
引用本文: 孟宣宣, 王春明, 胡席远. CO2激光拼焊的光与声信号分析[J]. 焊接学报, 2011, (7): 95-99.
MENG Xuanxuan, WANG Chunming, HU Xiyuan. Analysis of optical and acoustic signals in CO2 laser butt welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2011, (7): 95-99.
Citation: MENG Xuanxuan, WANG Chunming, HU Xiyuan. Analysis of optical and acoustic signals in CO2 laser butt welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2011, (7): 95-99.

CO2激光拼焊的光与声信号分析

Analysis of optical and acoustic signals in CO2 laser butt welding

  • 摘要: 采用自行研制的多传感器激光焊接实时监测系统,以CO2激光拼焊过程中的蓝紫光辐射(400~440 nm)、红外辐射(1200~1700 nm)以及可听声(20~20 kHz)等三种信号作为被检测参量,进行了信号的在线采集与记录,通过时域、频域以及时频分析,实现信号中有效信息的挖掘.结果表明,7000 Hz以上的高频段光声信号成分,尤其是蓝紫光信号,较好地反映了熔池与小孔的稳定性,可以用于识别间隙过大造成的焊缝质量问题.

     

    Abstract: The blueviolet radiation(400-440 nm), infrared radiation(1200-1700 nm) and audio sound(20-20 kHz) are used as signals detected by a multi-sensor real-time monitoring system in the process of CO2 laser butt welding. The signals can be collected and recorded online. The valuable information in the signals was found out by time-domain, frequency domain and time-frequency analysis. According to the signal features, it can be concluded that the high frequency part(higher than 7000 Hz) of the optical and acoustic signals, especially the blueviolet optical radiation signal can reflect the stability of welding pool and keyhole well, and can be used to identify the weld seam defects caused by large gap joint.

     

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