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Study on vibration characteristics of a locomotive with gear tooth root crack by simulation

机译:仿真研究齿轮齿根裂纹机车的振动特性

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Gear transmission is a key element in locomotives where it delivers the traction or braking powers between the motor and the wheelset. Its dynamic performance and service reliability have a direct effect on the performance of the locomotive. Gear failures, such as tooth crack and the induced tooth breakage, are likely to deteriorate the dynamic performance of the locomotive or make the train out of control, or even cause disastrous derailment. Fortunately, these failures will also vary the vibration responses of the locomotive, which enables the possibility of vibration-based fault detection for locomotives. In this study, vibration features of a locomotive when a tooth root crack fault is in presence in one of its gear transmissions. Here, the results for a healthy locomotive and a gear tooth cracked locomotive are compared to reveal the fault vibration features. Also, effect of the rail geometric irregularity excitation is also considered. It is proven that the rail geometric irregularity could slur frequency structure which brings a challenge to the fault feature extraction. Application of the time synchronous averaging (TSA) technique is proven to be effective for solving this problem.
机译:齿轮传动是机车中的关键元件,在那里它在电机和轮子之间提供牵引力或制动功率。其动态性能和服务可靠性对机车的性能直接影响。齿轮故障,如牙齿裂纹和诱导的牙齿破损,可能会使机车的动态性能恶化,或者使火车失控,甚至造成灾难性的脱轨。幸运的是,这些故障也会改变机车的振动响应,这使得能够对机车的基于振动的故障检测的可能性。在该研究中,当齿根裂纹故障在其一个齿轮传动装置中存在时的机车的振动特征。这里,比较健康机车和齿轮齿裂纹机车的结果,以揭示故障振动特征。而且,还考虑了轨道几何不规则激励的效果。证明铁路几何不规则性可以浆料结构,这给故障特征提取带来了挑战。时间同步平均(TSA)技术的应用被证明是为了解决这个问题而有效。

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