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Measurement of Airflow Resistivity Variation Due to Temperature and Its Impact on Simulated Sound Absorption Inside a Vehicle's Passenger Compartment

机译:由于温度及其对车辆乘客舱内模拟吸声的影响,气流电阻率变化的测量

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Airflow resistivity is one of the most important parameters in the study of the physical properties of porous acoustic materials. This parameter is fundamental for the correct evaluation of sound absorption of acoustic materials and is needed in all the theoretical models. In the present work, airflow resistivity of porous materials is determined under effective operating conditions inside a vehicle (temperature, compression of the panels). Starting from the discussion on the measurement uncertainty, experimental data of airflow resistivity, measured as a function of temperature and applied static loads, are presented. By introducing the measured values in a SEA model of a typical vehicle panel, the foreseen values of acoustic absorption due to variation of temperature and static load are determined and presented.
机译:气流电阻率是多孔声学材料的物理性质研究中最重要的参数之一。 该参数是正确评估声学材料的正确评估的基础,在所有理论模型中都需要。 在本作工作中,在车辆内的有效操作条件下确定多孔材料的气流电阻率(温度,面板的压缩)。 从关于测量不确定性的讨论开始,提出了作为温度和施加静载荷的函数测量的气流电阻率的实验数据。 通过在典型车辆面板的海模型中引入测量值,确定并呈现由于温度和静载荷的变化引起的声学吸收值。

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