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Acoustic panels using magnetostrictive Metglas

机译:使用磁致伸缩性Metglas的声学板

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Passive barriers to transmission of sound waves at frequencies below 500 Hz require large masses. Active noise cancellation systems, on the other hand, are complicated and expensive. We are developing a method for noise control, using an array of panels of magnetostrictive Metglas, which combines the low mass and flexibility of active noise control with the relatively low cost and simplicity of passive noise control. The method is based on the well known fact that an acoustic panel with a reaction mass, resonant at the frequency of the sound wave, will completely reflect that wave, simulating an infinite mass. By wrapping a coil around each Metglas panel, and terminating the coil in an impedance, the stiffness of the Metglas, and hence the resonant frequency of the panel, can be controlled by varying the terminal impedance. By choosing a terminal impedance which is itself frequency dependent, the panel can be made to resonate, and hence to have effective infinite mass, at all frequencies (over some fairly large range) simultaneously. This generally requires negative impedance, which can be produced by a simple circuit with an amplifier and feedback loop. In effect, the Metglas acts like both microphone and speaker in an active noise control system. Preliminary experimental results will be presented.
机译:在500Hz低于500Hz的频率下,声波传输的被动障碍需要大量质量。另一方面,主动噪声消除系统复杂且昂贵。我们正在开发一种用于噪声控制的方法,使用磁致伸缩型Metglas的面板阵列,这与有源噪声控制的低质量和灵活性以相对较低的成本和无源噪声控制的简单性相结合。该方法基于众所周知的事实:具有反应物质的声学面板,声波频率的谐振,将完全反映该波,模拟无限的质量。通过在每个Metglas面板周围包裹线圈,并且可以通过改变终端阻抗来控制Metglas的阻抗的刚度并因此终止面板的谐振频率。通过选择其自身相关的终端阻抗,可以使面板谐振,从而在所有频率(在某个相当大的范围内)同时具有有效的无限质量。这通常需要负阻抗,这可以通过具有放大器和反馈回路的简单电路来生产。实际上,Metglas在有源噪声控制系统中类似于麦克风和扬声器。将提出初步实验结果。

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