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Model analysis and verification of 2K-H planetary gear system

机译:2K-H行星齿轮系统的模型分析与验证

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The planetary gear system is the important part of the cutting unit in a coal shearer, and its performance is directly related to the output efficiency in coal mines. Analyzing the natural frequencies and vibration modes of a planetary gear system in a coal shearer is helpful for designing and monitoring the planetary gear system. So a lateral-torsional coupled free vibration model is proposed with the shaft stiffness of the sun gear based on the analysis of a purely torsional model. The solutions are determined by using the modal superposition method. Taking the planetary gear system in the cutting unit of a YBCS2-400 type coal shearer as an example and studying the natural characteristics, the vibration modes of the undamped system could be classified into three types - rotational mode, translational mode and planet mode. The associated reduced-order eigenvalue for each type of vibration mode is derived and the analytical expression of natural frequency is presented for the planet mode. The established model is validated by comparing it with the results of a finite element model, and the effect on the vibration frequencies of the transmission and width ratio has been obtained by means of the finite element model.
机译:行星齿轮系统是采煤机中切割装置的重要组成部分,其性能直接关系到煤矿的输出效率。分析采煤机中行星齿轮系统的固有频率和振动模式有助于设计和监控行星齿轮系统。因此,在分析纯扭力模型的基础上,提出了具有太阳轮轴刚度的扭扭耦合自由振动模型。通过使用模态叠加方法确定解。以YBCS2-400型采煤机切割装置的行星齿轮系统为例,研究其自然特性,将无阻尼系统的振动模式分为旋转模式,平移模式和行星模式三种。推导了每种振动模式的相关降阶特征值,并给出了行星模式的固有频率的解析表达式。通过与有限元模型的结果进行比较,验证了所建立的模型,并通过有限元模型获得了对传动振动频率和宽度比的影响。

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