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首页> 外文期刊>International Journal of Automotive Technology >Vibro-Acoustic Response in Vehicle Interior and Exterior Using Multibody Dynamic Systems Due to Cleat Impacts
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Vibro-Acoustic Response in Vehicle Interior and Exterior Using Multibody Dynamic Systems Due to Cleat Impacts

机译:vibro-声反应在车辆内部和外部使用多体动态系统引起的夹层撞击

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摘要

This paper presents the structural vibration and acoustic radiation of a multibody vehicle system in interior and exterior under cleat impact excitations. The entire structure model, which consists of a hyper-elastic tire, a 17-inch lightweight wheel, a rotatable hub, a high-strength knuckle, a control arm and a spring-damper suspension, is a quarter vehicle to simulate transient response when passing through a cleat. The normal acceleration of a vibrating structure surface is applied as an acoustic noise source. A structural-acoustic coupling is employed to consider the interactive effects of the coupled system. The influence of the structure-borne noise can be confirmed by the frequency-correlation analysis between vibration acceleration and acoustic pressure. A sound pressure level (SPL) for near-field radiation is calculated by the finite element method (FEM). In addition, acoustic characteristics such as sound intensity in the passenger cabin are calculated through the boundary element method (BEM). The cleat impact experiment in a hemi-anechoic chamber is presented and validated in detail.
机译:本文介绍了在夹层冲突下的内部和外部的多体载体系统的结构振动和声学辐射。由超弹性轮胎,17英寸轻质轮,可旋转轮毂,高强度转向节,控制臂和弹簧阻尼器悬架组成的整个结构模型是四分之一的车辆,以模拟瞬态响应穿过夹板。振动结构表面的正常加速度被施加为声学噪声源。采用结构声耦合来考虑耦合系统的交互式效果。可以通过振动加速和声压之间的频率相关分析来确认结构噪声的影响。通过有限元方法(FEM)计算用于近场辐射的声压水平(SPL)。另外,通过边界元方法(BEM)计算客舱中的声强等声学特性。详细介绍和验证了半透道室中的夹板冲击试验。

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