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Damage detection in grinding of steel workpieces through ultrasonic waves

机译:通过超声波磨削钢工件的损伤检测

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The quality control of the workpieces through reliable tests is of utmost importance in the manufacturing of a precision component. In this context, the monitoring of damages towards automation of the grinding process is essential for the manufacturing industry and of great interest for researchers of the area. This work proposes a technique for monitoring damages in steel parts in the grinding process, using low-cost piezoelectric diaphragms in the emitter and receiver configuration. The tests were performed in a surface grinding machine with aluminum oxide grinding wheel and SAE 4340 steel workpiece. The hardness measurements of the workpieces were carried out to identify the changes occurred from the grinding process. The signals from the transducers were sampled at a rate of 2 MHz. A spectrum analysis of the obtained signals was performed with the aim at characterizing the frequency ranges that were most related to the workpiece surface condition. The results demonstrated that the proposed method is effective to detect surface damage in steel parts in the grinding process.
机译:通过可靠测试的工件的质量控制在精密部件的制造方面至关重要。在这种情况下,对磨削过程的自动化损害的监测对于制造业至关重要,对该地区的研究人员感兴趣。这项工作提出了一种用于在发射器和接收器配置中使用低成本压电隔膜的磨削过程中钢部件损坏的技术。该试验在具有铝氧化铝砂轮和SAE 4340钢制工件的表面磨机中进行。进行工件的硬度测量以识别研磨过程中发生的变化。来自换能器的信号以2MHz的速率进行采样。使用与工件表面条件最相关的频率范围的频率范围进行所获得的信号的频谱分析。结果表明,该方法有效地在研磨过程中检测钢部件的表面损坏。

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