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Laser-induced thermal damage detection in metallic materials via acoustic emission and ensemble empirical mode decomposition

机译:通过声发射和整体经验模态分解检测金属材料中的激光诱导的热损伤

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摘要

A detection method of laser-induced thermal damage-surface burn, rehardening and residual stress, was studied in this work. Artificial thermal damage was produced to various steels, e.g., AISI 1045, ASTM A36 and AISI 304, by virtue of laser irradiation. The aim of the present work is to identify thermal damage through sensor and feature extraction techniques. Acoustic emission (AE) sensor and ensemble empirical mode decomposition (EEMD) method were employed for this purpose. A de-noising method was proposed to eliminate noises from original AE signals, based on EEMD. Quantified thermal damage features were obtained. Results evidenced a strong correlation between AE features, i.e., RMS value of the reconstructed acoustic emission signal, and surface burn, residual stress value, as well as hardness of steels. The present work could be used as a potential and indirect approach for thermal damage detection.
机译:这项工作研究了一种激光诱导的热损伤表面烧伤,再硬化和残余应力的检测方法。借助于激光辐射,对各种钢例如AISI 1045,ASTM A36和AISI 304产生了人为的热损伤。本工作的目的是通过传感器和特征提取技术来识别热损伤。为此,采用了声发射(AE)传感器和整体经验模式分解(EEMD)方法。提出了一种基于EEMD的去噪方法,用于消除原始AE信号中的噪声。获得了量化的热损伤特征。结果证明了AE特征(即重建的声发射信号的RMS值)与表面燃烧,残余应力值以及钢的硬度之间有很强的相关性。目前的工作可以用作潜在的和间接的热损伤检测方法。

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