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In-process grinding monitoring through acoustic emission

机译:通过声发射进行过程中磨削监控

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摘要

This work aims to investigate the efficiency of digital signal processing tools of acoustic emission signals in order to detect thermal damages in grinding processes. To accomplish such a goal, an experimental work was carried out for 15 runs in a surface grinding machine operating with an aluminum oxide grinding wheel and ABNT 1045 Steel as work material. The acoustic emission signals were acquired from a fixed sensor placed on the workpiece holder. A high sampling rate data acquisition system working at 2.5 MHz was used to collect the raw acoustic emission instead of the root mean square value usually employed. Many statistical analyses have shown to be effective to detect burn, such as the root mean square (RMS), correlation of the AE, constant false alarm rate (CFAR), ratio of power (ROP) and mean-value deviance (MVD). However, the CFAR, ROP, Kurtosis and correlation of the AE have been presented more sensitive than the RMS. Copyright © 2006 by ABCM.
机译:这项工作旨在研究声发射信号的数字信号处理工具的效率,以检测研磨过程中的热损伤。为了实现该目标,在以氧化铝砂轮和ABNT 1045钢为工作材料的平面磨床中进行了15次试验。声发射信号是从放置在工件支架上的固定传感器获取的。使用工作频率为2.5 MHz的高采样率数据采集系统来收集原始声发射,而不是通常采用的均方根值。许多统计分析已显示有效检测灼伤,例如均方根(RMS),AE关联,恒定误报率(CFAR),功率比(ROP)和均值偏差(MVD)。但是,CFAR,ROP,峰度和AE的相关性比RMS更为敏感。 ABCM版权所有©2006。

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