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首页> 外文期刊>International Journal of Automotive Technology >PROCESS OF DESIGNING BODY STRUCTURES FOR THE REDUCTION OF REAR SEAT NOISE IN PASSENGER CAR
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PROCESS OF DESIGNING BODY STRUCTURES FOR THE REDUCTION OF REAR SEAT NOISE IN PASSENGER CAR

机译:减少乘用车后座噪声的车身结构设计过程

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摘要

This study analyzes the interior noise that is generated during acceleration of a passenger car in terms of car body structure and panel contribution. According to the transfer method, interior noise is classified into structure-borne noise and air-borne noise. Structure-borne noise is generated when the engine's vibration energy, an excitation source, is transferred to the car body through the engine mount and the driving system and the panel of the car body vibrates. When structure-borne noise resonates in the acoustic cavity of the car interior, acute booming noise is generated. This study describes plans for improving the car body structure and the panel form through a cause analysis of frequency ranges where the sound pressure level of the rear seat relative to the front seat is high. To this end, an analysis of the correlation between body attachment stiffness and acoustic sensitivity as well as a panel sensitive component analysis were conducted through a structural sound field coupled analysis. Through this study, via research on improving the car body structure in terms of reducing rear seat noise, stable performance improvement and light weight design before the proto-car stage can be realized. Reduction of the development period and test car stage is also anticipated.
机译:这项研究从车身结构和面板影响方面分析了乘用车加速过程中产生的内部噪声。根据传递方法,内部噪声分为结构噪声和空气噪声。当发动机的振动能量(一种激励源)通过发动机支座和驱动系统传递到车身,并且车身面板振动时,会产生结构噪声。当结构噪声在汽车内部的声腔中共振时,会产生剧烈的轰鸣声。这项研究通过对后座相对于前座的声压级较高的频率范围进行原因分析,描述了改善车身结构和面板形状的计划。为此,通过结构声场耦合分析对车身附着刚度和声学灵敏度之间的相关性进行了分析,并对面板敏感成分进行了分析。通过这项研究,通过在降低原车后座噪音方面改善车身结构的研究,稳定的性能改进和轻量化设计,可以实现原车阶段。还预计将减少开发周期和测试车阶段。

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