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首页> 外文期刊>Noise Control Engineering Journal >Analysis of structure-borne noise in vehicles by modifying the stiffness of joint parts in the suspension system and vehicle body
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Analysis of structure-borne noise in vehicles by modifying the stiffness of joint parts in the suspension system and vehicle body

机译:通过修改悬架系统和车身接头部位的刚度来分析车辆中的结构性噪声

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This study aims to change and improve the transmitted force to the vehicle body, the noise transfer function (NTF), and vehicle interior noise by modifying the stiffness of joint parts, which are the local areas of the subframe and body in white (BIW) connected to isolators. We adopted frequency response function (FRF)-based substructuring in order to understand the effects of the stiffness of joint parts for reducing the vibration in the transfer path of a "chassis- isolator-vehicle body". In addition, a process that could be used to predict the vehicle interior noise was developed based on FRF-based substructuring. Using the FRF-based substructuring technique, the transmitted force from the chassis to the vehicle body caused by the increased stiffness of the joint parts in the chassis and vehicle body was calculated. Subsequently, the NTF from the joint parts of a vehicle body to the driver's ear location was calculated. In the chassis, the transmitted force to the vehicle body increased or decreased with increasing stiffness of the joint parts of the chassis, and the vehicle interior noise showed similar tendency of the transmitted force. In the vehicle body, the transmitted force to the vehicle body increased when the stiffness of the joint parts of the BIW was increased. However, as the noise transfer function was reduced beyond the increase in the transmitted force, the vehicle interior noise decreased. The role of the isolator stiffness is dominant for determining change of the transmitted force, which affects the vehicle interior noise. Therefore, in order to reduce the vehicle interior noise, the stiffness of isolator and joint parts should be set in consideration of the transmitted force from the chassis to the vehicle body. (C) 2016 Institute of Noise Control Engineering.
机译:这项研究的目的是通过修改接头部分的刚度来改变和改善传递给车身的力,噪声传递函数(NTF)和车辆内部噪音,这些部位是副车架和白色车身的局部区域(BIW)连接到隔离器。我们采用基于频率响应函数(FRF)的子结构,以了解关节零件的刚度对减少“底盘-隔离器-车身”传递路径中的振动的影响。此外,基于基于FRF的子结构开发了可用于预测车辆内部噪声的过程。使用基于FRF的子结构技术,计算了由于底盘和车身的接合部分刚度增加而导致的从底盘到车身的传递力。随后,计算从车身的接合部位到驾驶员的耳朵位置的NTF。在底盘中,传递到车身的力随着底盘的接合部的刚度的增加而增加或减小,并且车辆内部的噪声显示出相似的传递力趋势。在车身中,当BIW的接合部分的刚度增加时,传递到车身的力增加。然而,随着噪声传递函数的减小超过传递力的增加,车辆内部的噪声减小了。隔离器刚度的作用对于确定传递力的变化至关重要,该变化会影响车辆内部噪音。因此,为了减少车辆内部的噪声,应该考虑从底盘到车身的传递力来设定隔离器和接合部的刚性。 (C)2016噪声控制工程研究所。

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