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Dynamic model for planetary gear train in a aircraft rotary actuator

机译:飞机旋转执行器中行星齿轮系的动力学模型

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The study on non-linear dynamic properties of two stage planetary gear train used in machine device with double-tooth has not been reported. This work theoretically studied the vibration model of the aircraft rotary actuator double-stage planetary gear train (Type 3K) constructed with spur gears, and used it to investigate their natural frequencies and vibration modes. The model admits three planar degrees of freedom for each of the sun, ring, carrier and planets. It includes key factors affecting planetary gear train vibration such as the time-varying mesh stiffness, integrated error of gear tooth contact, the bearing support stiffness and the other factors, and gives the vector expressions. The thesis derives the meshing pair relative displacement in the meshing line based on the analysis of planetary gear train elastic deformation, and establishes the sun, planet, carrier and ring sub-structural dynamics model by the dynamic sub-structural modeling method. For the mode, the relation between inherent frequency and vibration amplitude is investigated in detail by the dynamic characteristics analysis. In accordance with the frequencies calculated and compared with the results by using finite element method, the comparison results show that method proposed is correct.
机译:尚未报道用于双齿机械装置的两级行星齿轮系的非线性动力学特性的研究。这项工作从理论上研究了由正齿轮构成的飞机旋转执行器双级行星齿轮系(3K型)的振动模型,并用于研究其固有频率和振动模式。该模型允许太阳,环,行星架和行星分别具有三个平面自由度。它包括影响行星齿轮系振动的关键因素,例如时变啮合刚度,齿轮齿接触的综合误差,轴承支撑刚度和其他因素,并给出了矢量表达式。本文在分析行星齿轮系弹性变形的基础上,得出了啮合线上的啮合副相对位移,并通过动态子结构建模方法建立了太阳,行星,行星架和环的子结构动力学模型。对于该模式,通过动态特性分析详细研究了固有频率与振动幅度之间的关系。根据计算得到的频率并与有限元方法进行比较,比较结果表明所提出的方法是正确的。

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