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Case Study - Experimental Determination of Airborne and Structure-Borne Road Noise Spectral Content on Passenger Vehicles

机译:案例研究 - 在乘用车上的空气传播和结构传播道路谱谱率的实验测定

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Appropriate road noise levels are critical to perceived quality in today's highly competitive automotive industry. Tire noise is often one of the dominant sources. In order to provide effective noise control schemes it is imperative to fully define the noise paths. In this paper, a case study of an experimental lab method is presented that allows definitive understanding of the structure-borne and airborne spectral contributions of tire noise. For this study, interior noise data were collected using a 10 ft road wheel. Data were collected for the front and rear tires. These measurements contained both the structure-borne and airborne contributions. The same test was performed with the tire physically disconnected from the vehicle structure. This measurement contained only the airborne contribution. The structure- borne contribution was then calculated as the difference in noise levels between the two cases.
机译:适当的道路噪音水平对于当今竞争激烈的汽车行业中的质量至关重要。轮胎噪音通常是主导来源之一。为了提供有效的噪声控制方案,必须完全定义噪声路径。在本文中,提出了一种实验实验室方法的案例研究,允许对轮胎噪声的结构和空中光谱贡献的明确了解。对于本研究,使用10英尺的路轮收集内部噪声数据。收集到前轮胎和后轮胎的数据。这些测量含有结构 - 传播和空中贡献。用与车辆结构物理断开的轮胎进行相同的测试。该测量仅包含空中贡献。然后计算结构 - 被贡献作为两种情况之间的噪声水平的差异。

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