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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Feasibility study of using acoustic signals for online monitoring of the depth of weld in the laser welding of high-strength steels
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Feasibility study of using acoustic signals for online monitoring of the depth of weld in the laser welding of high-strength steels

机译:在高强度钢的激光焊接中使用声信号在线监测焊缝深度的可行性研究

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摘要

It is a trend to use high-strength steels in the automobile industry because of their good formability, weldability, and high strength-volume ratio. In order to achieve quality control, it is necessary to monitor the welding process online. In this paper, acoustic signals generated during the laser welding process of high-strength steel DP980 were recorded and analysed. A microphone was used to acquire the acoustic signals. A spectral subtraction method was used to reduce the noise in the acoustic signals, and a Welch-Bartlett power spectrum density estimation method was used to analyse the frequency characteristics of the acoustic signals. The results indicate that good welds with full penetration (FP) could be clearly distinguished from bad welds with partial penetration (PP). An algorithm based on the different sound pressures between FP and PP was developed to identify the penetration state in the time domain. Another algorithm based on the different frequency characteristics from 500 to 1500 Hz between FP and PP was also developed to differentiate the penetration state. The results show that these two algorithms can effectively distinguish FP from PP. In addition, the mechanisms of the different characteristics of the acoustic signal generated from different penetration depths and modes were also analysed and discussed. This study shows that it is feasible to use acoustic signals to achieve online monitoring of the penetration states during the laser welding of high-strength steel DP980 in a noisy environment by applying proper digital signal processing methods. The acquired acoustic signal could be used as a feedback signal to control the depth of weld penetration in the laser welding process.
机译:由于高强度钢的良好成形性,可焊性和高强度/体积比,在汽车工业中使用高强度钢已成为一种趋势。为了实现质量控制,有必要在线监控焊接过程。本文记录并分析了高强度钢DP980激光焊接过程中产生的声信号。使用麦克风来获取声音信号。使用频谱减法来减少声信号中的噪声,并使用Welch-Bartlett功率谱密度估计方法来分析声信号的频率特性。结果表明,可以将良好的全焊透(FP)焊缝与不良的部分焊透(PP)焊缝区分开。开发了一种基于FP和PP之间不同声压的算法,以识别时域中的穿透状态。还开发了另一种基于FP和PP之间从500到1500 Hz的不同频率特性的算法来区分穿透状态。结果表明,这两种算法可以有效区分FP和PP。此外,还分析和讨论了由不同穿透深度和模式产生的声信号的不同特性的机制。这项研究表明,在嘈杂的环境中,通过应用适当的数字信号处理方法,在高强度钢DP980激光焊接过程中使用声波信号在线监测渗透状态是可行的。所获取的声信号可以用作反馈信号,以控制激光焊接过程中焊缝熔深的深度。

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