刚度
材料科学
声阻抗
超材料
电阻抗
声学
吸收(声学)
膜
等效电路
低频
管(容器)
物理
复合材料
光电子学
电压
化学
超声波传感器
生物化学
量子力学
天文
作者
Junjuan Zhao,Xianhui Li,Yueyue Wang,Wenjiang Wang,Bin Zhang,Xiao-Ling Gai
摘要
A membrane absorber usually requires a large back cavity to achieve low-frequency sound absorption. This paper describes the design of a membrane acoustic metamaterial absorber in which magnetic negative stiffness is employed to reduce the size of the back cavity. As a baseline for the present research, analysis of a typical membrane sound absorber based on an equivalent circuit model is presented first. Then, a theoretical model is established by introducing negative stiffness into a standard absorber. It is demonstrated that a small cavity with negative stiffness can achieve the acoustic impedance of a large cavity and that the absorption peak is shifted to lower frequencies. Experimental results from an impedance tube test are also presented to validate this idea and show that negative stiffness can be employed to design compact low-frequency membrane absorbers.
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