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Antifriction Bearing Sleeves for Diagnostics and Energy Harvesting

机译:用于诊断和能量收集的减摩轴承套

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Roller ball bearings are the most common and one of the most important components in rotating machinery. Bearings, in general produce vibrations which can be harvested to produce energy and analysis of these vibrations can also be used to determine the condition of ball bearing. In this paper we discuss how to use the bearings for energy harvesting and conditioning monitoring in machines. A sleeve, padded with piezoelectric material, is designed to solve the dual purpose. Piezo electric materials have the ability to generate an electric field or electric potential in response to applied mechanical strain.rnTests are conducted on the good and defective bearings to study the effectiveness of the sleeve. Phase fluctuation based processors are found to be effective in ball bearing condition monitoring. For condition monitoring the signature responses for a given time period are studied. At a constant speed of increase in load leads to an increase in voltage generated. For a single non-coated piezo film, voltage varies from 383 mV at 80 lbf to 683 mV at 320 lbf at 40Hz. With the increased stacking of non-coated piezo films at 320 lbf, voltage generated shows an increase of 23 %. Nano-coating mixture (Ferrofluid and Zinc oxide nanoparticles) causes an additional piezoelectric effect on the surface of piezo film as ZnO acts as an additional source of electrons, due to its ability to emit charges at room temperature. The single piezo film configuration at 320 lbf generates a voltage of 663 mV while the voltage increases 2.1rntimes for a single nano-coated piezo film. Introduction of defects causes increases in the contact stress at the asperities leading to an increase in the vibrations and forces. Also, an increase in vibration and force, leads to an increase in the voltage generated. For a single piezo film configuration, in a normal bearing, the voltage generated is 663 mV while a defective bearing gives a voltage of 698 mV.rnKeywords- Roller ball bearing, Energy harvesting, Piezo film, and Phase fluctuation based signal analysis.
机译:滚珠轴承是旋转机械中最常见,也是最重要的组件之一。轴承通常会产生振动,可以将其收集起来以产生能量,对这些振动的分析也可以用于确定滚珠轴承的状况。在本文中,我们讨论了如何将轴承用于机器中的能量收集和状态监测。设计有填充压电材料的套筒来解决双重目的。压电材料具有响应施加的机械应变而产生电场或电势的能力。rn对好轴承和有缺陷轴承进行了测试,以研究轴套的有效性。发现基于相位波动的处理器在球轴承状态监控中很有效。为了进行状态监视,研究了给定时间段内的签名响应。以恒定的速度增加负载会导致产生的电压增加。对于单个非涂层压电薄膜,电压从40 Hz时的383 mV(在80 lbf下)到683 mV(在320 lbf下)之间变化。随着320 lbf的非涂层压电薄膜堆叠量的增加,产生的电压显示增加了23%。纳米涂料混合物(铁磁流体和氧化锌纳米粒子)在压电薄膜的表面上产生附加的压电效应,因为ZnO由于其在室温下的电荷发射能力而成为附加的电子源。在320 lbf的单压电膜配置中,产生的电压为663 mV,而单纳米涂层的压电膜的电压则增加了2.1n倍。引入缺陷会导致粗糙处的接触应力增加,从而导致振动和力增加。而且,振动和力的增加导致产生的电压的增加。对于单压电膜配置,在正常轴承中,产生的电压为663 mV,而有缺陷的轴承提供的电压为698 mV。关键字:滚珠轴承,能量收集,压电膜和基于相位波动的信号分析。

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