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首页> 外文期刊>Journal of vibration and control: JVC >Design and test of a torsional vibration absorber in series with a planetary gearset
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Design and test of a torsional vibration absorber in series with a planetary gearset

机译:用行星齿轮组串联扭振吸收器的设计与测试

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摘要

Traditional vibration absorbers have not often been a practical solution for attenuating low frequency drivetrain modes of vibration because of the combination of the large mass and inertia and/or low stiffness, required to tune to the desired frequency. With the goal of reducing the inertia and size of a torsional vibration absorber, a unique vibration absorber was developed. Using a planetary gearset, the effective inertia of the absorber was increased without changing its physical mass, and a torsional mode below 30 Hz was successfully attenuated with physically realizable inertia and stiffness parameters. By reducing the tuned mass, the total volume claimed by the vibration absorber and planetary gearset was up to three times less than an equivalent traditional vibration absorber. A lumped parameter torsional model was developed to determine the optimal configuration of the planetary gearset input, output, and absorber inertia as well as a method to predict the optimal tuning frequency of the planetary torsional vibration absorber. A drivetrain dynamometer setup which emulates a two-degree-of-freedom torsional system was used to experimentally test and validate the performance of two planetary torsional vibration absorber prototypes built based upon the results of the lumped parameter model. The dynamometer setup was designed to have a first torsional mode around 20 Hz in which the planetary torsional vibration absorber was designed to attenuate. Based upon the experimental results of the planetary torsional vibration absorber, a reduction of over 20 dB was achieved.
机译:由于调谐到所需频率所需的大质量、惯性和/或低刚度的组合,传统减振器通常不是衰减低频传动系振动模式的实际解决方案。为了减小扭转减振器的惯性和尺寸,开发了一种独特的减振器。使用行星齿轮组,在不改变其物理质量的情况下增加了减振器的有效惯性,并使用物理可实现的惯性和刚度参数成功地衰减了30 Hz以下的扭转模式。通过减少调谐质量,减振器和行星齿轮组的总体积比同等的传统减振器小三倍。建立了一个集总参数扭振模型,以确定行星齿轮组输入、输出和减振器惯性的最佳配置,以及预测行星扭振减振器最佳调谐频率的方法。利用模拟两自由度扭振系统的传动系测功机装置,对基于集总参数模型结果建立的两个行星扭振减振器原型的性能进行了实验测试和验证。测功机装置设计为具有约20 Hz的第一扭转模式,其中行星扭转减振器设计为衰减。根据行星式扭振减振器的实验结果,可实现20 dB以上的减振效果。

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