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Characterisation of vehicle seat rattle noise from seat structural dynamics

机译:通过座椅结构动力学表征车辆座椅的嘎嘎声

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The vehicle seat has robust structural dynamics characteristics which typically comprise of a maximum of three known vibration mode shapes at low frequencies (< 70 Hz). The goal of this paper is to investigate whether the seat rattle can be predicted and managed from its structural dynamics. The amplitude (loudness) and the high fractal dimensions of the signal (unpleasantness of the sound) have been studied. It has been shown that by modifying the critical frequencies, the seat rattle can be controlled and set in the early design phase. In addition to managing the frequency of the rattle, the knowledge of the seat vibration mode shape may help optimise the joint's properties. The locations and geometries of the joint for the seat sub-components, such as storage box or headrest, can be modified during the design stage in order to reduce the seat rattle noise.
机译:车辆座椅具有坚固的结构动力学特性,通常在低频(<70 Hz)下最多包含三个已知的振动模式形状。本文的目的是研究是否可以通过其结构动力学来预测和管理座椅摇铃。已经研究了信号的幅度(响度)和高分形维数(声音的不适感)。已经表明,通过修改临界频率,可以在设计的早期阶段控制并设置座椅的嘎嘎声。除了管理拨浪鼓的频率以外,有关座椅振动模式形状的知识可能还有助于优化关节的性能。座椅子组件(例如储物箱或头枕)的接头位置和几何形状可以在设计阶段进行修改,以减少座椅发出的嘎嘎声。

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