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首页> 外文期刊>International Journal of Automotive Technology >PREDICTION OF VIBRATING FORCES ON MESHING GEARS FOR A GEAR RATTLE USING A NEW MULTI-BODY DYNAMIC MODEL
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PREDICTION OF VIBRATING FORCES ON MESHING GEARS FOR A GEAR RATTLE USING A NEW MULTI-BODY DYNAMIC MODEL

机译:使用新的多体动力学模型预测齿轮响动的网状齿轮的振动力

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摘要

An efficient multibody dynamic model was developed to predict the vibrating transmitted gear forces of loaded and unloaded pairs of helical gears simultaneously at all speeds. The model can also calculate the bearing forces of a manual transmission that, in turn, may be converted to rattling noises. The bending of meshing gear teeth and torsional flexibility of transmission shafts were considered and embodied effectively in the multibody dynamic model by calculating the tooth bending stiffness and adding a torsion spring on a shaft section between two gears, respectively. The reactive forces on teeth and bearings were calculated and compared using three different models that were developed for this study - an equivalent model, a rigid-body model, and a frequency-based model. The equivalent model took only 58% computation time, compared to the frequency-based method, even though the two showed very similar results.
机译:建立了有效的多体动力学模型,以预测在所有速度下同时加载和卸载的斜齿轮对的振动传递齿轮力。该模型还可以计算手动变速器的轴承力,而后者又可以转换为嘎嘎声。通过计算齿的弯曲刚度并在两个齿轮之间的轴段上分别添加扭力弹簧,在多体动力学模型中考虑并有效地体现了啮合齿轮齿的弯曲和传动轴的扭转挠性。使用本研究开发的三种不同模型(等效模型,刚体模型和基于频率的模型)计算并比较了在牙齿和轴承上的反作用力。与基于频率的方法相比,等效模型仅花费58%的计算时间,即使两者显示的结果非常相似。

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