首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Study on the Vehicle Cabin Noise Employing the Interfacial Friction in Double Layered Frames Used in Electric Vehicle Traction Motors
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Study on the Vehicle Cabin Noise Employing the Interfacial Friction in Double Layered Frames Used in Electric Vehicle Traction Motors

机译:电动牵引电机双层框架中界面摩擦引起的车厢噪声研究

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摘要

Electric vehicles are considered not only eco-friendly but also quieter than vehicles with conventional internal combustion engines. However, less noisy environments in cabins make passengers feel uncomfortable to moderate noise. This paper discusses noise reduction for electric vehicles radiated from traction motors. In the analysis of the noise generation mechanisms it is demonstrated that frequency ranges of the highest level in the noise spectrum of electromagnetic harmonic orders of the induction motor coincide with structural resonances of the motor housing. Interfacial friction between the inner and outer housings of the motor is employed in reducing structural vibration of the motor. Measured noise in the cabin and vibration at the motor housing indicates that slip damping presented from interfacial friction between the inner and outer housing is effective in reducing noise from the traction motor and in the cabin.
机译:电动汽车不仅被认为具有环保性,而且比传统内燃机的汽车更安静。但是,机舱内的嘈杂环境较少,使乘客对中等噪音感到不舒服。本文讨论了牵引电机辐射的电动汽车的降噪问题。在分析噪声产生机理时,证明了感应电动机的电磁谐波阶次的噪声频谱中最高水平的频率范围与电动机壳体的结构共振一致。电动机的内壳和外壳之间的界面摩擦被用于减小电动机的结构振动。机舱中测得的噪声和电动机壳体处的振动表明,内壳和外壳之间的界面摩擦产生的滑移阻尼有效地降低了牵引电动机和机舱中的噪声。

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