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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Evaluation of the rattle noise of a vehicle seat using the coherence analysis technique
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Evaluation of the rattle noise of a vehicle seat using the coherence analysis technique

机译:使用相干分析技术评估车辆座椅的嘎嘎声

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The complicated transfer path relationship between the vibrations of a seat and the noise at the locations of the driver's ears was estimated from the residual spectrum. For accurate quantitative estimation of the rattle noise at the locations of the driver's ears, in particular the partial coherence function of the pure inputs to the output was modelled by considering the correlation between the inputs and the input-output. Whenever a coherence analysis was performed with the noise sources in close proximity selected as the inputs and the noise at the locations of the driver's ears modelled as the output, the partially coherent output spectrum as a quantitative contribution of the inputs to the output was determined. In this study, we applied a coherence analysis technique to identify the sources of the rattle noise of a seat by visualizing the noise sources with an acoustic camera while excitation of the seat was carried out using a hydraulic exciter. We were able to generate the rattle noise from the headrest stay, the recliner and the front part of the slide while excitation of the seat was obtained using a hydraulic exciter with white noise. We observed that the noise was generated by utilizing a hydraulic six-axis exciter positioned at the driver's seat of a middle-sized manual transmission vehicle. We determined that the noise measured at the locations of the driver's ears had a frequency of 58Hz using acoustic visualization and a coherence technique. It was selected in particular as the target frequency since the 58Hz resonant frequency caused by the twisting mode of the seat back was identical with the frequency of the rattle noise. Finally, it was verified through a modal test that the rattle noise at 58Hz was generated by the vibration characteristics of the seat, which depended on gaps between the headrest stay and the guide.
机译:根据残留频谱,可以估算出座椅振动和驾驶员耳朵位置的噪声之间的复杂传递路径关系。为了准确量化驾驶员耳朵位置的拨浪鼓噪声,特别是通过考虑输入和输入-输出之间的相关性,对纯输入到输出的部分相干函数进行建模。每当以接近的噪声源作为输入并以驾驶员耳朵位置的噪声作为输出建模时进行相干分析时,就确定了部分相干的输出频谱,作为输入对输出的定量贡献。在这项研究中,我们应用了一种相干分析技术,通过在使用液压激励器对座椅进行激励的同时,用声学相机可视化噪声源,从而确定座椅发出的嘎嘎声。我们能够从头枕撑杆,躺椅和滑轨的前部发出嘎嘎声,同时使用带有白色噪音的液压激励器获得座椅的激励。我们观察到,噪声是利用位于中型手动变速箱驾驶员座椅上的液压六轴激励器产生的。我们通过声学可视化和相干技术确定了在驾驶员耳朵位置测得的噪声的频率为58Hz。由于座椅靠背的扭曲模式引起的58Hz共振频率与拨浪鼓噪声的频率相同,因此特别选择该频率作为目标频率。最后,通过模态测试验证了58Hz的嘎嘎声是由座椅的振动特性产生的,该振动特性取决于头枕支架和导轨之间的间隙。

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