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平面感应器检测位置对磨屑的影响。

The Effects of Position on the Wear Debris Detection with Planar Inductor.

机构信息

College of Marine Engineering, Dalian Maritime University, Dalian 116026, China.

College of Science, Dalian Maritime University, Dalian 116026, China.

出版信息

Sensors (Basel). 2019 Nov 14;19(22):4961. doi: 10.3390/s19224961.

Abstract

Wear debris detection is an effective method to determine the running state of the machine. Recently, the planar inductor is commonly used to detect wear debris. The previous studies have found that the inductive signal would be varied while changing the position of wear debris pass through. However, the effect of position on the wear debris detection is not well understood. In this paper, a novel detection system in which the position of wear debris pass through could be adjusted precisely is designed. By changing the position in horizontal or vertical direction, the inductive signals of the wear debris were acquired. In the horizontal direction, the experimental results show that the amplitude of the inductive signal first increases and then decreases when the position changes from the center of the planar inductor to the outer. The maximum inductive signal appears when the wear debris pass through the edge of the inner coil, which is 20% higher than that for the center and much higher than that for the edge of outer coil. In the vertical direction, the signal decreases almost linearly when the position is away from the planar inductor. For every 0.1 mm step far away the planar inductor, the signal amplitude drops by approximately 10%. The variation trend of our experimental results is consistent with the numerical simulation results of magnetic intensity around the planar inductor.

摘要

磨粒磨损检测是确定机器运行状态的有效方法。最近,平面感应器常用于检测磨损颗粒。先前的研究发现,当磨损颗粒通过感应器时,感应信号会发生变化。然而,对于位置对磨损颗粒检测的影响,目前还没有得到很好的理解。本文设计了一种可以精确调整磨损颗粒通过位置的新型检测系统。通过改变水平或垂直方向的位置,采集磨损颗粒的感应信号。在水平方向上,实验结果表明,当位置从平面感应器的中心向外侧移动时,感应信号的幅度先增大后减小。当磨损颗粒通过内圈边缘时,感应信号最大,比中心处高 20%,比外圈边缘处高得多。在垂直方向上,当位置远离平面感应器时,信号几乎呈线性下降。距离平面感应器每远离 0.1 毫米,信号幅度大约下降 10%。我们的实验结果的变化趋势与平面感应器周围磁场强度的数值模拟结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a543/6891667/e1d56bc874af/sensors-19-04961-g001.jpg

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