Absorption characteristics of a double‐leaf membrane with an absorptive layer in its cavity
Absorption characteristics of a double‐leaf membrane with an absorptive layer in its cavity
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DOI:
10.1121/1.422830
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发表时间:
1998-05
影响因子:
2.4
通讯作者:
K. Sakagami;T. Uyama;M. Kiyama;M. Morimoto
中科院分区:
文献类型:
--
作者:
K. Sakagami;T. Uyama;M. Kiyama;M. Morimoto
Absorption characteristics of double‐leaf membranes with an absorptive layer in the cavity are theoretically analyzed. The double‐leaf membrane is modeled as two infinite membranes with a cavity between them, which consists of three layers of arbitrary media. The theory also includes the effect of permeability of the interior leaf. The effects of parameters of the absorptive layer on the absorption characteristics are discussed through numerical examples. The absorption characteristics of an impermeable double‐leaf membrane are characterized by a mass‐spring resonance peak at low frequencies. This peak becomes larger and shifts to lower frequencies as the thickness of the absorptive layer increases. The absorption characteristics are, in permeable cases, similar to those of the conventional porous absorbents; the absorption is low at low frequencies and higher at high frequencies. As the thickness of the absorptive layer increases, the absorption becomes higher at all frequencies. The change in position of the absorptive layer affects the absorption characteristics of the double‐leaf membrane. This effect is related to the standing‐wave sound field in the cavity. The flow resistance of the absorptive layer has an optimum value to maximize the absorption of a double‐leaf membrane.