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A micromachined, high signal-to-noise ratio, acoustic emission sensor and its application to monitor dynamic wear

机译:一种微机械,高信噪比的声发射传感器及其在动态磨损监测中的应用

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摘要

This paper presents a micro-machined, acoustic emission (AE) sensor, with a novel, corrugated PVDF sensing core. Using an improved fabrication process, a cost-effective sensing unit and more reliable device packaging method are presented. The curvatures of the stacked PVDF sensing layers, formed by a micro-embossing technique, using upper and lower dies of different geometries, are studied. The fabricated AE sensor is found to exhibit superior signal-to-noise ratio (SNR) and performs about 13 times better than a commercially available AE sensor, based on the results of a steel-ball drop test. The sensor is used to monitor the operation of ball bearings with different levels of wear. An experimental setup for producing ball bearings with different wear levels is also presented. Through frequency spectrum analysis, results are found to demonstrate its efficiency in detecting dynamic friction. This can be very useful in examining the condition of structures and predicting the likelihood of possible future failures.
机译:本文介绍了一种微机械的声发射(AE)传感器,它具有新颖的波纹状PVDF传感芯。使用改进的制造工艺,提出了一种具有成本效益的传感单元和更可靠的器件封装方法。研究了通过微压印技术使用不同几何形状的上,下模形成的堆叠PVDF传感层的曲率。根据钢球跌落测试的结果,发现制成的AE传感器表现出优异的信噪比(SNR),性能比市售AE传感器好约13倍。该传感器用于监测具有不同磨损程度的球轴承的运行。还介绍了生产具有不同磨损等级的球轴承的实验装置。通过频谱分析,结果证明了其在检测动态摩擦方面的效率。这对于检查结构状况和预测未来可能发生的故障非常有用。

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