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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Analysis of experimentally generated friction related acoustic emission signals
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Analysis of experimentally generated friction related acoustic emission signals

机译:分析实验产生的与摩擦有关的声发射信号

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摘要

Acoustic emission signals generated by sliding friction between two flat steel surfaces are characterized. A test fixture to simulate the reciprocating motion between the two surfaces under controlled conditions is developed. Sliding friction under several combinations of surface roughness, relative velocity, and normal pressure was examined. Wideband AE sensors and instrumentation were used for acquiring and analyzing the acoustic emission signals. Acoustic emission events occurred primarily during the slip portion of the stick-slip cycles. AE waveform features obtained during these experiments were indicative of the tribological conditions. Frequency components in excess of 700 kHz were seen during these experiments. The characteristics of the experimentally observed acoustic emission signals were in general agreement with earlier numerical predictions. Friction related acoustic emission signals were distinguishable from those from other sources such as fatigue crack growth. The characterization of friction related acoustic emission signals is likely to be of value in many tribological and structural health monitoring applications.
机译:表征了由两个扁平钢表面之间的滑动摩擦产生的声发射信号。开发了一种在固定条件下模拟两个表面之间的往复运动的测试夹具。检查了表面粗糙度,相对速度和法向压力的几种组合下的滑动摩擦。宽带声发射传感器和仪器用于获取和分析声发射信号。声发射事件主要发生在粘滑循环的滑移部分。在这些实验中获得的AE波形特征表明了摩擦学条件。在这些实验中发现超过700 kHz的频率分量。实验观察到的声发射信号的特性与早期的数值预测总体上是一致的。与摩擦有关的声发射信号可与其他来源的信号区别开,例如疲劳裂纹扩展。与摩擦有关的声发射信号的表征在许多摩擦学和结构健康监测应用中可能很有价值。

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