嵌入式压电传感器圆柱滚子轴承局部故障检测仿真研究

Ali Safian, N. Wu, Xihui Liang
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引用次数: 0

摘要

三十年来,通过加速度计检测轴承局部故障一直是最基本的状态监测技术之一。然而,加速度计对来自其他部件/机器的周围噪声的敏感性以及传感器和轴承之间的长传输路径引起了人们对使用嵌入式传感器和测量局部应变而不是加速度的更多关注。如今,利用嵌入式智能材料,如低成本压电传感器,可以使不同行业受益,以检测机器或结构中的异常情况。在某些情况下,这些异常以压电材料可检测到的突然应变变化的形式出现。因此,本研究提出将压电传感器嵌入传输路径较短的轴承壳中,检测局部故障引起的异常。通过ANSYS APDL软件的数值模拟,研究了圆柱滚子轴承在健康状态和缺陷状态下的动力学特性。结果表明,局部故障的存在会影响径向应变的变化,并成比例地改变产生的电压信号。这些变化(故障症状)在时间和频率域中进行研究,以进行故障检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of a Cylindrical Roller Bearing with an Embedded Piezoelectric Sensor for Local Fault Detection
Local fault detection in bearings through accelerometer has been one of the most fundamental condition monitoring techniques for three decades. Nevertheless, the sensitivity of accelerometers to surrounding noises from other components/machines and a long transmission path between the sensor and bearing has attracted more attention toward using embedded sensors and measurement of local strain rather than acceleration. These days, utilizing embedded smart materials, such as low-cost piezoelectric sensors, can benefit different industries to detect abnormal conditions in machines or structures. In some cases, these abnormalities show up in the form of sudden strain changes that is detectable by piezoelectric materials. Therefore, in this research, using embedded piezoelectric sensors in a bearing housing with a short transmission path is proposed to detect abnormalities due to a local fault. Through numerical simulation in ANSYS APDL, the dynamic of a cylindrical roller bearing in the healthy and defective conditions is investigated. According to the results, the existence of a local fault affects the radial strain changes and proportionally changes the generated voltage signal. These changes (fault symptoms) are investigated in the time and frequency domains for fault detection.
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