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Improved bearing sensing for prognostics: from vibrations to optical fibres

机译:改善轴承感测以进行预测:从振动到光纤

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摘要

Bearings are vital elements in rotating machinery. Despite their wide use, bearings are prone to failures that can result in irreversible damage. The detection of bearing damage in its incipient stages and monitoring of the fault severity are required for the optimisation of maintenance decisions. The classical methods for bearing monitoring are based on an analysis of the vibration signals usually captured by an accelerometer located on the machine case. Two difficulties arise when diagnosing bearings via vibrations: the effect of the transmission path to the sensor distorts the signals and the low signal-to-noise ratio characterising the weak bearing signals in the presence of the accompanying strong surrounding noise originating from the vibrations of other rotating components in the machine. The goal of the presented work was to study the possibility of overcoming the current problems of bearing prognostics by locating the sensors as close as possible to the bearing. Two types of sensor were selected: micro electro-mechanical system (MEMS) accelerometers and optical fibres to measure strain. Due to their small dimensions, these sensors can be embedded into the system close to, or even inside, the bearing. The measured signals from bearings with various spall widths show an improved signal-to-noise ratio, demonstrating the power of these two local sensing methodologies. By avoiding transmission path effects, the results show the clear detection of early defects. The results of this study open new options for monitoring and detecting the early signs of failure in critical bearings.
机译:轴承是旋转机械中的重要元素。尽管用途广泛,但轴承还是容易出现故障,从而导致不可逆转的损坏。为了最优化维护决策,需要在初期就检测轴承损坏并监测故障严重程度。用于轴承监视的经典方法是基于对振动信号的分析,该振动信号通常由位于机壳上的加速度计捕获。通过振动诊断轴承时会遇到两个困难:到传感器的传输路径的影响会使信号失真,并且在存在源自其他振动的伴随的强烈周围噪声的情况下,低信噪比表征了较弱的轴承信号。旋转机器中的组件。提出的工作的目的是研究通过将传感器放置在尽可能靠近轴承的位置来解决当前轴承预测问题的可能性。选择了两种类型的传感器:微机电系统(MEMS)加速度计和用于测量应变的光纤。由于它们的尺寸小,这些传感器可以嵌入到轴承附近甚至内部的系统中。来自具有不同剥落宽度的轴承的测量信号显示出改善的信噪比,证明了这两种局部传感方法的强大功能。通过避免传输路径的影响,结果可以清楚地发现早期缺陷。这项研究的结果为监测和检测关键轴承的早期故障迹象提供了新的选择。

著录项

  • 来源
    《Insight》 |2015年第8期|437-441|共5页
  • 作者单位

    Aeronautical Engineering Studies and Laboratory for Mechanical Health Monitoring, Department of Mechanical Engineering, Ben-Gurion University of the Negev, POBox653, Beer Sheva 8410501, Israel;

    Aeronautical Engineering Studies and Laboratory for Mechanical Health Monitoring, Department of Mechanical Engineering, Ben-Gurion University of the Negev, POBox653, Beer Sheva 8410501, Israel;

    Aerospace Industries, Israel;

    RK Diagnostics, PO Box 101, Gilon, DN Misgav 20103, Israel;

    School of Electrical Engineering, Tel Aviv University, Ramat Aviv 69978, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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