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Experimental study of failing differential gears and introduction of a new condition indicator for ultra low speed applications

机译:超低速度应用引入差分齿轮的试验研究及新条件指标

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摘要

Detecting gear cracks in ultra low speed, high load planetary gears plays an important role in engineering praxis and in the development of differential gearboxes for vehicles. The analysis of the acceleration signals for condition monitoring purposes, which is widely used in the industry, cannot be applied for this use case. The aim of this paper and experimental study is to develop a new condition monitoring method, which makes it possible to detect cracks and follow the crack propagation in differential gears under realistic test conditions without any artificially seeded faults. The variation of the Locking Factor (LF) and its vibration spectrum over the complete testing time (14-81 h) is analysed with the new method. The successive change of the spectrum of the LF and the Condition Indicator (CI) is presented in this paper. Due to the complex structure of the test bed and the complex modulation phenomenon, a new approach was needed for detecting the cracks.
机译:检测超低速度的齿轮裂缝,高负荷行星齿轮在工程实践中起着重要作用以及车辆的差动齿轮箱。对该行业广泛使用的条件监测目的的加速信号的分析不能应用于这种用例。本文的目的和实验研究是开发一种新的状态监测方法,这使得可以检测裂缝并在实际的试验条件下遵循差动齿轮的裂纹传播,而没有任何人为种子的故障。用新方法分析锁定因子(LF)的变化(LF)及其在完整的测试时间(14-81h)上的振动谱。本文提出了LF光谱和条件指示器(CI)的频谱的连续变化。由于试验台的复杂结构和复杂的调制现象,需要一种新的方法来检测裂缝。

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