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Experimental study on influence of wall acoustic materials of 3D cavity for targeted energy transfer of a nonlinear membrane absorber

机译:三维腔壁声材料对非线性膜吸收剂靶向能量转移影响的实验研究

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In view of applying the membrane nonlinear energy sink (NES) to reduce the low-frequency noise inside vehicle interior with acoustic absorption materials, a simplified acoustic cavity is used to model vehicle interior cavity. The system of one acoustic mode of the parallelepiped cavity and one membrane is established and the experimental set-up is built. The forced vibration responses in frequency-domain and time-domain are analyzed by using the set-up with and without the acoustic materials. Under certain excitation amplitude and frequency range, the strongly modulated responses (SMR) occurs and the plateau of suppressed resonance peaks appears. Meanwhile, the energy of the system is studied when the SMR exists. The targeted energy transfer (TET) phenomenon and the theoretical model of the system is verified by the experimental method. The wall acoustic materials of 3D cavity could affect the TET of the system, where the excitation amplitude for the beginning threshold of the desired working zone becomes larger and the excitation amplitude interval of TET becomes larger simultaneously. The ending threshold of the desired working zone of the NES is redefined. The numerical results are in good agreement with the experimental results. The application of membrane NES in 3D acoustic cavity proposed in this paper provides a new technical idea for vehicle interior low-frequency noise reduction in the future. (C) 2021 Elsevier Ltd. All rights reserved.
机译:鉴于应用膜非线性能量水槽(NES)以减少车辆内部的电动吸收材料内的低频噪声,简化的声腔用于模拟车辆内腔。建立了一个不同的一个声学模式和一个膜的声学模式,建立了实验设置。通过使用带有声学材料和没有声学材料的设置来分析频域和时域中的强制振动响应。在某些激发幅度和频率范围内,发生强调制的响应(SMR)并且出现抑制谐振峰的平台。同时,当SMR存在时,研究了系统的能量。通过实验方法验证了目标能量转移(TET)现象和系统的理论模型。 3D腔的壁声材料可以影响系统的TET,其中所需工作区的开始阈值的激励幅度变大,并且TET的激励幅度间隔同时变大。重新定义NE的所需工作区的结束阈值。数值结果与实验结果吻合良好。膜NE在本文提出的3D声腔中的应用为未来的车辆内部低频降噪提供了新的技术思想。 (c)2021 elestvier有限公司保留所有权利。

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