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首页> 外文期刊>AIP Advances >Noise suppression in curved glass shells using macro-fiber-composite actuators studied by the means of digital holography and acoustic measurements
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Noise suppression in curved glass shells using macro-fiber-composite actuators studied by the means of digital holography and acoustic measurements

机译:使用宏观纤维复合致动器抑制弯曲玻璃壳中的噪声,该致动器通过数字全息和声学测量方法进行研究

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摘要

The paper presents methods and experimental results of the semi-active control of noise transmission in a curved glass shell with attached piezoelectric macro fiber composite (MFC) actuators. The semi-active noise control is achieved via active elasticity control of piezoelectric actuators by connecting them to an active electric shunt circuit that has a negative effective capacitance. Using this approach, it is possible to suppress the vibration of the glass shell in the normal direction with respect to its surface and to increase the acoustic transmission loss of the piezoelectric MFC-glass composite structure. The effect of the MFC actuators connected to the negative capacitance shunt circuit on the surface distribution of the normal vibration amplitude is studied using frequency-shifted digital holography (FSDH). The principle of the used FSDH method is described in the paper. The frequency dependence of the acoustic transmission loss through the piezoelectric MFC-glass composite structure is estimated using measurements of the specific acoustic impedance of the curved glass shell. The specific acoustic impedance is measured using two microphones and a laser Doppler vibrometer (LDV). The results from the LDV measurements are compared with the FSDH data. The results of the experiments show that using this approach, the acoustic transmission loss in a glass shell can be increased by 36 dB in the frequency range around 247 Hz and by 25 dB in the frequency range around 258 Hz. The experiments indicate that FSDH measurements provide an efficient tool that can be used for fast and accurate measurements of the acoustic transmission loss in large planar structures.
机译:本文介绍了带有压电宏纤维复合材料(MFC)致动器的弧形玻璃壳中噪声传递的半主动控制方法和实验结果。半主动噪声控制是通过将压电执行器连接到具有负有效电容的主动分流电路,通过主动控制压电执行器来实现的。使用该方法,可以抑制玻璃壳相对于其表面在法线方向上的振动,并且可以增加压电MFC-玻璃复合结构的声传输损耗。使用频移数字全息(FSDH)研究了连接到负电容并联电路的MFC执行器对正常振动幅度的表面分布的影响。本文介绍了使用的FSDH方法的原理。通过测量弯曲玻璃壳的比声阻抗,可以估计通过压电MFC-玻璃复合结构的声传输损耗的频率依赖性。使用两个麦克风和激光多普勒振动计(LDV)测量比声阻抗。将LDV测量的结果与FSDH数据进行比较。实验结果表明,使用这种方法,玻璃壳中的声传输损耗可以在247 Hz左右的频率范围内增加36 dB,在258 Hz左右的频率范围内增加25 dB。实验表明,FSDH测量提供了一种有效的工具,可用于快速,准确地测量大型平面结构中的声传输损耗。

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