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Characteristics of sound pressure in the tire cavity arising from acoustic cavity resonance excited by road roughness

机译:路面不平整引起的声腔共振引起的轮胎腔内声压特性

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Under the conditions of the low-noise powertrain design and the small road roughness, the noise in car cabin from the tire cavity resonance is often remarkable. The analysis on the sound pressure inside the tire cavity arising from cavity resonance is the key work for understanding the transferring characteristics and performing the subsequent noise control. In this paper, the finite element model of a tire coupling with acoustic medium in the tire cavity is constructed and verified by tests. In order to simulate tire cavity resonance excited by road roughness, the excitation is researched firstly. There are two main excitation of tire cavity resonance: effective road roughness and the effects of tire's rolling. The effective road roughness obtained from the road roughness power spectrum density and vehicle vibration model is taken into consideration. On this basis, the sound pressure distributions in tire cavity excited by road roughness are simulated. Also the influences of inflation pressure as well as tire load on the sound pressure distribution are studied. These works may lay a foundation for attenuating the noise inside car cabin from tire acoustic resonance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在低噪声动力总成设计和小路面不平整的条件下,轮胎空腔共振产生的车厢噪声通常非常明显。对由气腔共振引起的轮胎腔内声压的分析是理解传递特性并进行后续噪声控制的关键工作。本文建立了轮胎腔内声介质耦合的有限元模型,并进行了试验验证。为了模拟路面不平整引起的胎腔共振,首先研究了该激发。轮胎空腔共振有两个主要的激发因素:有效的路面粗糙度和轮胎滚动的影响。考虑从道路粗糙度功率谱密度和车辆振动模型获得的有效道路粗糙度。在此基础上,模拟了路面不平整引起的胎腔声压分布。还研究了充气压力以及轮胎载荷对声压分布的影响。这些工作可能为衰减车厢内部轮胎声共振产生的噪音奠定基础。 (C)2018 Elsevier Ltd.保留所有权利。

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