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首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL IDENTIFICATION ON A GEAR WHINE NOISE IN THE AXLE SYSTEM OF A PASSENGER VAN
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EXPERIMENTAL IDENTIFICATION ON A GEAR WHINE NOISE IN THE AXLE SYSTEM OF A PASSENGER VAN

机译:客货车轴系中齿轮噪声的实验识别。

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摘要

This paper presents practical work on the reduction of gear whine noise. In order to identify the source of the gear whine noise, transfer paths are searched and analyzed by operational deflection shape analysis and experimental modal analysis. It was found that gear whine noise has an air-borne noise path instead of structure-borne noise path. The main sources of air-borne noise were the two global modes caused by the resonance of an axle system. These modes created a vibro-acoustic noise problem. Vibro-acoustic noise can be reduced by controlling the vibration of the noise source. The vibration of noise source is controlled by the modification of structure to avoid the resonance or to reduce the excitation force. In the study, the excitation force of the axle system is attenuated by changing the tooth profile of the hypoid gear. The modification of the tooth profile yields a reduction of transmission error, which is correlated to the gear whine noise. Finally, whine noise is reduced by 10 dBA.
机译:本文介绍了减少齿轮啸叫声的实际工作。为了识别齿轮发出的噪音,通过运行偏转形状分析和实验模态分析来搜索和分析传递路径。发现齿轮啸声具有空气传播的噪声路径而不是结构传播的噪声路径。空气传播噪声的主要来源是由轮轴系统的共振引起的两种全局模式。这些模式产生了振动声噪声问题。可以通过控制噪声源的振动来减少振动声噪声。通过改变结构来控制噪声源的振动,以避免共振或减小激励力。在研究中,通过改变准双曲面齿轮的齿廓来减弱车轴系统的激励力。齿廓的修改可降低传动误差,这与齿轮发出的啸叫声有关。最后,呜呜声降低了10 dBA。

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