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Electrical monitoring of mechanical defects in induction motor driven V-belt-pulley speed reduction couplings

机译:感应电动机驱动V形皮带轮减速联轴器机械缺陷的电气监测

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V-belt-pulley couplings are commonly used for speed reduction in induction motor driven industrial applications since they provide flexible transmission of power at low cost. However, they are susceptible to mechanical defects such as belt wear or crack that can cause slippage or damage of the belt and lead to decrease in efficiency and lifetime of the system. There are many limitations to applying existing tests such as visual inspection, thermal or mechanical monitoring as they require visual or physical access to the system and/or costly sensors. Considering the large quantity of belt-pulley systems employed in industry, the impact of the economic loss incurred by low-efficiency operation and unplanned process outages is significant. In this paper, electrical monitoring of belt-pulley coupling defects based on the analysis and trending of the stator current frequency spectrum under steady-state and starting conditions is presented. The proposed method is verified on 1) 6.6 kV motor driven pulpers, and on a 2) custom-built motor driven air compressor with speed reduction belt-pulleys under controlled fault conditions. It is shown that the proposed method can provide automated, remote, and safe detection of belt-pulley defects based on existing current measurements for improving system reliability and efficiency.
机译:V型皮带轮联轴器通常用于感应电动机驱动的工业应用的减速,因为它们以低成本提供灵活的功率传输。然而,它们易于机械缺陷,例如皮带磨损或裂缝,其可引起皮带的可滑动或损坏,并导致系统的效率和寿命降低。应用现有测试,如目视检查,热或机械监控等许多限制,因为它们需要对系统和/或昂贵的传感器进行视觉或物理访问。考虑到工业中采用的大量皮带轮系统,低效运行和无计划的流程中断产生的经济损失的影响是显着的。本文介绍了基于稳态和起始条件下的基于分子电流频谱的分析和趋势的皮带轮耦合缺陷的电监测。所提出的方法在1)6.6 kV电动机驱动纸浆上验证,并在A 2)上的定制电动机驱动空气压缩机,减速带 - 滑轮在受控故障条件下。结果表明,该方法可以基于现有电流测量来提供自动化,遥控和安全检测带 - 皮带轮缺陷,以提高系统可靠性和效率。

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