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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Acoustic absorption behaviour of an open-celled aluminium foam
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Acoustic absorption behaviour of an open-celled aluminium foam

机译:开孔泡沫铝的吸声性能

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摘要

Metal foams, especially close-celled foams, are generally regarded as poor sound absorbers. This paper studies the sound absorption behaviour of the open-celled Al foams manufactured by the infiltration process, and the mechanisms involved. The foams show a significant improvement in sound absorption compared with close-celled Al foams, because of their high flow resistance. The absorption performance can be further enhanced, especially at low frequencies, if the foam panel is backed by an appropriate air gap. Increasing the air-gap depth usually increases both the height and the width of the absorption peak and shifts the peak towards lower frequencies. The foam samples with the smallest pore size exhibit the best absorption capacities when there is no air gap, whereas those with medium pore sizes have the best overall performance when there is an air gap. The typical maximum absorption coefficient, noise reduction coefficient and half-width of the absorption peak are 0.96-0.99, 0.44-0.62 and 1500-3500 Hz, respectively. The sound dissipation mechanisms in the open-celled foams are principally viscous and thermal losses when there is no air-gap backing and predominantly Helmholtz resonant absorption when there is an air-gap backing. [References: 20]
机译:金属泡沫,特别是闭孔泡沫,通常被认为是不良的吸声材料。本文研究了渗透过程中制造的开孔铝泡沫的吸声性能,以及其机理。由于其高流动阻力,与闭孔Al泡沫相比,该泡沫在吸声方面显示出显着改善。如果泡沫板带有适当的气隙,则可以进一步提高吸收性能,尤其是在低频时。气隙深度的增加通常会同时增加吸收峰的高度和宽度,并使该峰向低频移动。当没有气隙时,孔径最小的泡沫样品表现出最佳的吸收能力,而当有气隙时,孔径中等的泡沫样品具有最佳的整体性能。典型的最大吸收系数,降噪系数和吸收峰的半峰宽分别为0.96-0.99、0.44-0.62和1500-3500 Hz。当没有气隙衬背时,开孔泡沫的消声机理主要是粘性和热损失,而在有气隙衬背时主要是亥姆霍兹共振吸收。 [参考:20]

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