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Numerical and experimental-based framework for vibroacoustic coupling investigation on a vehicle door in the slamming event

机译:基于数值和实验的跨声耦合调查在恐怖事件中的车门耦合调查

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摘要

The sound quality produced by the door slamming event is one of the significant subjective parameters to evaluate the inherent quality of the vehicle. The vehicle door is mainly composed of fixed door panels and moving glass channels and the sound quality depends on these structural components. This paper proposes a numerical and experimental-based framework to evaluate the vibro-acoustic coupling value between the door panel system and the glass channel system in the door slamming event. The framework is composed of transfer path analysis (TPA), semi-constrained modal analysis based on finite element analysis (FEA) and lab experiments, and boundary element analysis (BEA). Two TPAs (the 1st and 2nd transfer path), lab experiment and bench test are conducted to obtain the transient excitation forces on the designated excitation points. Modal analysis is carried out by FEA and validated through experiments. Transient responses are obtained through FEA and low-frequency modes. Finally, the transient vibration response is mapped to the boundary element mesh, and the acoustic pressure at the microphone field point is obtained by using the BEA technique. The vibro-acoustic coupling value is obtained by comparing the total acoustic energy of the door panel system and glass channel system with the entire door's acoustic energy. This framework can be used for optimal door structural design to maximize a door's noise, vibration, and harshness (NVH) performance.
机译:门砰砰行产生的声音质量是评估车辆固有质量的重要主观参数之一。车门主要由固定门板和移动玻璃通道组成,声音质量取决于这些结构部件。本文提出了一种基于实验的基于实验的框架,以评估门板系统与门砰的事件中的玻璃通道系统之间的振动声耦合值。该框架由转移路径分析(TPA)组成,基于有限元分析(FEA)和实验室实验的半约束模态分析,边界元分析(BEA)。进行两种TPA(第1和第2转移路径),实验室实验和台式测试以获得指定激发点上的瞬态激发力。模态分析由FEA进行并通过实验进行验证。通过FEA和低频模式获得瞬态响应。最后,瞬态振动响应被映射到边界元啮合物,并且通过使用BEA技术获得麦克风场点处的声压。通过将门板系统和玻璃通道系统的总声能与整个门的声能进行比较来获得振动声耦合值。该框架可用于最佳门结构设计,以最大限度地提高门的噪音,振动和粗糙度(NVH)性能。

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