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Coupled Multi-Body Dynamic and Vibration Analysis of High-Speed, Hypoid-Geared Rotor System

机译:耦合多体动态振动分析,高速,间接齿轮齿轮转子系统

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High-speed, precision-geared rotor systems are often plagued by excessive vibration and noise problems. The response that is primarily excited by gear transmission error is actually coupled to the large displacement rotational motion of the driveline system. Classical pure vibration model assumes that the system oscillates about its mean position without coupling to the large displacement motion. To improve on this approach and understanding of the influences of the dynamic coupling, a coupled multi-body dynamic and vibration simulation model is proposed. Even though the focus is on hypoid-geared rotor system, the model is more general since hypoid and bevel gears have more complicated geometry and time- and spatial-varying characteristics compared to parallel axis gears. This paper presents a multi-degree-of-freedom, multi-body, hypoid-geared rotor system dynamic model that incorporates a unique gear mesh representation to calculate the combined motion of the large displacement rotation and small displacement vibration. Numerical simulation results are analyzed in both time and frequency domains, and compared to those of the classical analytical methods or practical observation. These results also reveal the effects of the dynamic coupling on the vibration excitation and the transient or nonlinear system response.
机译:高速,精密齿轮转子系统通常通过过度振动和噪音问题困扰。主要由齿轮传输误差激励的响应实际上耦合到传动系统系统的大位移旋转运动。经典的纯振动模型假设系统围绕其平均位置而不耦合到大的位移运动。为了提高这种方法和对动态耦合影响的理解,提出了一种耦合的多体动态和振动仿真模型。尽管焦点在间接齿轮转子系统上,但是该模型更为一般,因为与平行轴齿轮相比,双摩尔和锥齿轮具有更复杂的几何形状和时空和空间和空间不同的特性。本文介绍了一种多程度自由度,多体,间隙齿轮转子系统动态模型,其包括独特的齿轮网格表示,以计算大的位移旋转和小位移振动的组合运动。在时间和频率域分析数值模拟结果,并与经典分析方法或实际观察相比。这些结果还揭示了动态耦合对振动激励和瞬态或非线性系统响应的影响。

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