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A Modal Study of Damping Treatments to Improve Low Frequency Sound Transmission Loss of a Structure

机译:阻尼处理的模态研究,提高结构低频声音传输损失

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Most of NVH related issues start from the vibration of structures where often the vibration near resonance frequencies radiates the energy in terms of sound. This phenomenon is more problematic at lower frequencies by structureborne excitation from powertrain or related components. This paper discusses a laboratory based case study where different visco-elastic materials were evaluated on a bench study and then carried on to a system level evaluation. A body panel with a glazing system was used to study both airborne and structureborne noise radiation. System level studies were carried out using experimental modal analysis to shift and tune the mode shapes of the structure using visco-elastic materials with appropriate damping properties to increase the sound transmission loss. This paper discusses the findings of the study where the mode shapes of the panel were shifted and resulted in an increase in sound transmission loss. This eventually resulted in reduced sound level inside the cabin.
机译:NVH相关问题的大部分从结构的振动开始,在谐振频率附近的振动通常在声音方面辐射能量。这种现象在动力系或相关组分的结构中激发的较低频率在较低的频率下是更有问题的。本文讨论了基于实验室的案例研究,其中在替补研究中评估了不同的粘弹性材料,然后进行到系统级评估。使用具有玻璃窗系统的车身面板用于研究空中和结构噪声辐射。使用实验模态分析进行系统级研究,使用粘弹性材料使用适当的阻尼性能来改变和调谐结构的模式形状以增加声音传输损耗。本文讨论了该研究的研究结果,其中板的模式形状移位并导致声音传输损耗的增加。这最终导致机舱内的声级减少。

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