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Effect of Rubber Hardness and Tire Size on Tire-Pavement Interaction Noise

机译:橡胶硬度和轮胎尺寸对轮胎路面相互作用噪声的影响

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Tire-pavement interaction noise (TPIN) is a dominant noise source for passenger cars and trucks above 25 mph (40 km/h) and above 43 mph (70 km/h), respectively. TPIN is generated due to excitations of the tread pattern and pavement texture. For the same tread pattern and pavement texture at the same speed, TPIN might also be influenced by the lire structure (e.g., the tread rubber hardness and tire size). In the present study, 42 tires with different rubber hardnesses and/or tire sizes were tested at live different speeds (45-65 mph, i.e., 72-105 km/h) on a nonporous asphalt pavement (a section of U.S. Route 460, both eastbound and westbound). An on-board sound intensity system was instrumented on the test vehicle to collect the lire noise data at both the leading edge and the trailing edge of the contact patch. An optical sensor recording the once-per-revolution signal was also installed to monitor the vehicle speed and, more importantly, to provide the data needed to perform the order tracking analysis to break down the tire noise into two components. These two components are the tread pattern noise and the non-tread pattern noise. It is concluded that for the nonporous asphalt pavement tested, the non-tread pattern noise increases with rubber hardness by ~0.23 dBA/Shore A. The tire carcass width (section width plus two times section height) influences the central frequencies of the non-tread pattern noise spectrum; the central frequencies decrease as the tire carcass width increases.
机译:轮胎路面相互作用噪声(TPIN)是乘用车和卡车高于25英里/小时(40 km / h)和43英里/小时以上(70 km / h)的主要噪声源。由于胎面图案和路面纹理的激励而产生TPIN。对于以相同速度的相同胎面图案和路面纹理,TPIN也可能受到雷丽结构的影响(例如,胎面橡胶硬度和轮胎尺寸)。在本研究中,在无孔沥青路面上的实时不同速度(45-65英里/小时,即72-105 km / h)测试42个具有不同橡胶硬度和/或轮胎尺寸的轮胎(US Route 460的一部分,东行和西方)。在测试车辆上仪器仪器上的板载声强系统,以在接触贴片的前缘和后缘之间收集Lire噪声数据。还安装了记录一次每转信号的光学传感器以监视车速,更重要的是,为了提供执行订单跟踪分析所需的数据,以将轮胎噪声分解为两个部件。这两个部件是胎面图案噪声和非胎面图案噪声。结论是,对于测试的无孔沥青路面,非胎面图案噪声随橡胶硬度增加〜0.23dBA /岸A.轮胎胴体宽度(截面宽度加两次段高度)影响非 - 中央频率胎面花纹噪声谱;随着轮胎胎体宽度的增加,中心频率会降低。

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