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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Improvement in underwater acoustic absorption performance of open-celled SiC foam
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Improvement in underwater acoustic absorption performance of open-celled SiC foam

机译:开孔SiC泡沫在水下的吸声性能改善

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Open-celled silicon carbide (SiC) foam has been proven of a promising underwater acoustic absorption material. However, further improvement of its sound absorption capacity especially at low frequency is restricted by the acoustic impedance mismatch between the foam material and the water surrounding it. Howto tailor the existing SiC foam in order to achieve an optimized impedance match is a key issue. In this work, the underwater acoustic absorption performance of open-celled SiC foam is studied by both analytical and experimental methods. First, based on Zwikker-Kosten's theory, the modified Johnson-Allard (J-A) model is proposed to analytically predict the absorption performance of liquid-saturated SiC foam. Then three approaches including (i) backing the test samples by a 30-mm-thick air cavity, (ii) enclosing a certain amount of water and (iii) filling the samples with silicon oil are proposed to improve the underwater sound absorption performance of SiC foam. The underwater acoustic absorbency of the silicon oil filled SiC foam is significantly improved, especially in the low frequency band. A sound absorption coefficient near unity is achieved by this manner over a significant portion of the investigated frequency range, eg. 750-4000 Hz. The foam partially filled with water also shows enhanced sound absorbency at low frequency, but the foams backed by air gap and saturated fully by water display degraded sound absorption capacity. (C) 2015 Elsevier B.V. All rights reserved.
机译:开孔碳化硅(SiC)泡沫已被证明是一种很有前途的水下吸声材料。但是,泡沫材料和其周围的水之间的声阻抗失配限制了其吸声能力的进一步提高,特别是在低频时。如何定制现有的SiC泡沫塑料以实现最佳的阻抗匹配是一个关键问题。在这项工作中,通过分析和实验方法研究了开孔SiC泡沫的水下吸声性能。首先,基于Zwikker-Kosten的理论,提出了改进的Johnson-Allard(J-A)模型,以分析预测液态饱和SiC泡沫的吸收性能。然后,提出了三种方法,包括(i)用30mm厚的空气腔支撑测试样品,(ii)封闭一定量的水,以及(iii)用硅油填充样品,以改善水下吸声性能。 SiC泡沫。填充硅油的SiC泡沫塑料的水下吸声性能得到了显着提高,尤其是在低频段。通过这种方式,在所研究的频率范围的很大一部分范围内(例如)获得了接近于1的吸声系数。 750-4000 Hz。部分填充有水的泡沫在低频下也显示出增强的吸声性,但是由气隙支持并被水完全饱和的泡沫显示出降低的吸声能力。 (C)2015 Elsevier B.V.保留所有权利。

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