Influence of idler misalignment fault on contact and dynamic characteristics of helical gear

Wei Li, XiaoFeng Li, Ziyuan Li
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Abstract

Due to the advantages of stable helical gear transmission, it is widely used in industry, agriculture, and national defense. Shaft misalignment has a great influence on the vibration, bearing capacity, and life of gear transmission. Based on the idler wheel drive system as the research object, according to the principle of gear meshing, the helical gear time-varying contact wire length model was deduced. The dynamic model of the gear transmission system with faults is established considering the faults of the idler's center distance error and angle error, and the influence law of idler misalignment fault on the vibration of the idler transmission system is revealed. On this basis, the finite element model under angle error is established to analyze the contact stress of the tooth surface under different faults and reveal the contact stress distribution law of the tooth surface. The results show that the misalignment fault will change the length of the helical gear contact line. When the gear shaft misaligns, it will increase the axial force of the gear and increase the axial vibration of the gear. Moreover, the angle error will cause uneven load distribution on the tooth surface of the helical gear, which will reduce the contact area of the gear and increase the contact stress. The phenomenon of off-load of gear accelerates the wear of the gear tooth surface and shortens the life of the gear. The study of idler misalignment fault is of great significance for prolonging the life of gear and providing the basis for gear fault diagnosis.
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惰轮不对中故障对斜齿轮接触和动态特性的影响
由于斜齿轮传动具有稳定的优点,因此被广泛应用于工业、农业和国防领域。轴错位对齿轮传动的振动、承载能力和寿命有很大影响。以惰轮传动系统为研究对象,根据齿轮啮合原理,推导出斜齿轮时变接触线长模型。考虑惰轮中心距误差和角度误差故障,建立了带故障齿轮传动系统的动力学模型,揭示了惰轮不对中故障对惰轮传动系统振动的影响规律。在此基础上,建立角度误差下的有限元模型,分析不同故障下齿面的接触应力,揭示齿面接触应力分布规律。结果表明,错位故障会改变斜齿轮接触线的长度。当齿轮轴错位时,会增加齿轮的轴向力,加剧齿轮的轴向振动。此外,角度误差会导致斜齿轮齿面上的载荷分布不均匀,从而减小齿轮的接触面积,增加接触应力。齿轮的偏载现象会加速齿轮齿面的磨损,缩短齿轮的使用寿命。研究惰轮不对中故障对延长齿轮寿命和提供齿轮故障诊断依据具有重要意义。
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