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A multichannel oil debris sensor for online health monitoring of rotating machinery.

机译:多通道油屑传感器,用于在线监测旋转机械的健康状况。

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摘要

Condition based monitoring has become essential in maintaining and extending the health of high-speed rotating and reciprocating machinery. One effective approach to detect signs of potential failure of a rotating or reciprocating machine is to examine the wear debris in its lubricating oil. Magnetic inductive sensors have gained certain success due to the capability of differentiation of ferrous and non-ferrous wear debris, which is important for condition monitoring of rotating and reciprocating machinery. However, they are limited to debris larger than 100 µm in size because of the low sensitivity of 3-D solenoids. To overcome this problem, the design concept and preliminary testing results of an inductive coulter Counter that uses a planar coil as sensing element are presented.;We first demonstrate the feasibility of the inductive Coulter counting principle to detect metal particles in lubrication oil using a microfluidic device. The device detects the passage of ferrous and nonferrous metal particles by monitoring the inductance change of an embedded planar coil. The device was tested using iron and copper particles ranging in size from 50 µm to 125 µm. The testing results have demonstrated that the device is capable of detecting and distinguishing ferrous and nonferrous metal debris particles in lubrication oil.;Next, to overcome the limitations of the microfluidic device, a meso-scale oil debris sensor was studied. The sensor used a two-layer planar coil with a meso-scale fluidic pipe crossing the planar coil's center as the sensing element. The testing results indicated that the throughput is significantly higher than that of the microfluidic channel without sacrificing the sensitivity. However, the throughput still needs to be improved to meet the online monitoring requirements. To further improve the throughput, we designed and tested an inductive Coulter counter with seven detection channels to detect and count metal particles in lubrication oil. The testing results indicated that using multichannel sensor we are able to improve the detection throughput of the sensor seven times in contrast to a single channel sensor. Negligible crosstalk among channels was observed.;Finally, a proof-of-principle resonant frequency division multiplexed four-channel inductive sensor for detecting microscale metallic debris in lubrication oil using only one set of detection electronics is presented. Using the resonance frequency division multiplexing method, debris particles in four parallel sensing channels were successfully detected and counted simultaneously. Testing results indicate the sensor is capable of differentiating and detecting ferrous and non-ferrous metallic debris. Crosstalk among four sensing channels is negligible.
机译:基于状态的监视对于维护和扩展高速旋转和往复式机械的运行状况已变得至关重要。检测旋转或往复运动机器潜在故障迹象的一种有效方法是检查其润滑油中的磨损碎屑。磁性感应传感器由于能够区分铁质和非铁质磨损碎片而获得了一定的成功,这对于旋转和往复式机械的状态监测非常重要。但是,由于3-D螺线管的灵敏度低,它们仅限于碎屑大于100 µm。为了克服这个问题,提出了一种使用平面线圈作为感应元件的感应库尔特计数器的设计理念和初步测试结果。我们首先证明了感应库尔特计数原理利用微流控技术检测润滑油中金属颗粒的可行性。设备。该设备通过监视嵌入式平面线圈的电感变化来检测黑色金属和有色金属颗粒的通过。使用尺寸从50 µm至125 µm的铁和铜颗粒测试了该设备。测试结果表明,该装置能够检测和区分润滑油中的黑色金属和有色金属碎片。其次,为克服微流体装置的局限性,研究了一种中尺度油屑传感器。该传感器使用两层平面线圈,其中有一个中尺度的流体管道穿过平面线圈的中心作为传感元件。测试结果表明,在不牺牲灵敏度的前提下,吞吐量显着高于微流体通道。但是,仍然需要提高吞吐量以满足在线监视要求。为了进一步提高吞吐量,我们设计并测试了带有七个检测通道的电感式库尔特计数器,以检测和计数润滑油中的金属颗粒。测试结果表明,与单通道传感器相比,使用多通道传感器可以将传感器的检测吞吐量提高七倍。最后,提出了仅使用一组检测电子装置检测润滑油中微量金属碎片的原理验证共振频分复用四通道感应传感器。使用共振频分复用方法,成功地检测并同时计数了四个平行传感通道中的碎屑颗粒。测试结果表明该传感器能够区分和检测黑色金属和有色金属碎片。四个感应通道之间的串扰可以忽略不计。

著录项

  • 作者

    Du, Li.;

  • 作者单位

    The University of Akron.;

  • 授予单位 The University of Akron.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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