A Study on the Detection of Fault Factor in Gear-Integrated Bearing

Yeon-Sik Kang, I. Yang, Eun-Ye Lee, H. Jin, D. Shim
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Abstract

High-precision lasers and anti-aircraft radars are the main equipment to protect the Korean Peninsula, and require preemptive maintenance before signs of failure. Of the key components in the drive sector, bearings do not have a fault alarm function. Therefore, the technology for diagnosing defects in bearings before the performance degradation of equipment occurs is becoming more important. In this paper, for the experimental analysis, we measured the acceleration of the four sets of the same lot using acceleration sensors. Through periodic measurements, the factors that changed until the bearing stopped rotating were analyzed. To determine the replacement time, the main factors and threshold values of the bearing signal were analyzed. The error of the theoretical and experimental analysis results of the defect frequency was within 2.8 %, and the validity of the theoretical analysis results could be confirmed. Based on the results, it is possible to remotely transmit trouble alerts to users through the system check function.
齿轮集成轴承故障因素的检测研究
高精度激光器和防空雷达是保护韩半岛的主要装备,需要在出现故障迹象之前进行先发制人的维护。在驱动部分的关键部件中,轴承不具有故障报警功能。因此,在设备性能下降之前诊断轴承缺陷的技术变得越来越重要。在本文中,为了进行实验分析,我们使用加速度传感器测量了四组相同批次的加速度。通过周期性测量,分析了轴承停止转动前的变化因素。为了确定更换时间,分析了轴承信号的主要影响因素和阈值。缺陷频率的理论和实验分析结果误差在2.8%以内,验证了理论分析结果的有效性。根据结果,可以通过系统检查功能远程发送故障警报给用户。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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