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研究带裂纹故障的行星齿轮传动系统内环根应变响应特性。

Research on Root Strain Response Characteristics of Inner Ring of Planetary Gear Transmission System with Crack Fault.

机构信息

College of Mechanical Engineering, Xinjiang University, Urumqi 830047, China.

出版信息

Sensors (Basel). 2022 Dec 26;23(1):253. doi: 10.3390/s23010253.

Abstract

This paper established the system dynamics model for two kinds of tooth cracks of different depths of the sun gear and inner gear ring to study the influence mechanism of crack failure on the tooth root strain of the planetary gear transmission system. Combined with the finite element model of the inner gear ring, the tooth root strain of the ring was solved. Experiments verified the correctness of the solution method. The root strain under the crack fault of the sun gear and the tooth crack fault of the inner gear ring is analyzed, and the following conclusions are drawn: Periodic fault impact occurs in the strain signal of the tooth root of the inner gear ring during the crack fault of the sun gear root. The fault can be extracted by the fast spectral kurtosis method (FSK), and the fault components are used to determine whether the sun gear cracks. The Lempel-Ziv index showed a tendency to increase gradually during the process of solar wheel crack deepening, which could be used as the damage index of crack depth. The results can provide a basis and reference for fault diagnosis.

摘要

本文建立了两种不同深度太阳轮和内齿圈齿裂的系统动力学模型,研究了齿裂故障对行星齿轮传动系统齿根应变的影响机制。结合内齿圈的有限元模型,求解了内齿圈的齿根应变。实验验证了该求解方法的正确性。分析了太阳轮齿根裂纹故障和内齿圈齿裂故障下的齿根应变,得出以下结论:太阳轮齿根裂纹故障时,内齿圈齿根应变信号中出现周期性故障冲击。可以用快速谱峭度法(FSK)提取故障,用故障分量来判断太阳轮是否发生故障。在太阳轮齿裂深度加深的过程中,Lempel-Ziv 指数呈现逐渐增大的趋势,可以作为齿裂深度的损伤指标。研究结果可为故障诊断提供依据和参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a14/9823330/3ea9bfe13e28/sensors-23-00253-g001.jpg

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