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The absorption characteristics of anechoic coating embedding mixed-cavity structure with single or double shell backing

机译:用单壳或双壳背衬嵌入混合腔结构的化学型涂层的吸收特性

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Rubber sheets embedding air cavities are wide used as anechoic coatings to reduce the energy of sound waves reflected by underwater structures, with a great military and use benefit to underwater vehicle sound stealth. According to the backing type, it can be divided into two kinds, namely rubber sheets-steel-air and rubber sheets-steel-water-steel-air, called the single and double shell backing coatings respectively. The most remarkable absorption characteristics of double shell backing coating is that its sound reflection coefficient frequency response curve increased on a series of sharp formants maxima, correspondingly, absorption coefficient curve appear a series of sharp minimum. This phenomenon is caused by the standing wave resonant which is formed in water interlayer between the double shells. Based on the finite element method, a non-rotating symmetrical numerical simulation model of coating embedding mixed-cavity, four small cavities around a big cavity, is established. Absorption characteristics of coating with single and double shell backing were studied. The results show that the sound absorption characteristics of mixed-cavity structure are significantly better than single-cavity structure's under the condition of same perforation rate. The absorption coefficient peak can be improved 0.2.
机译:嵌入空气腔的橡胶板宽被用作化学涂层,以减少由水下结构反射的声波的能量,具有巨大的军事和利益对水下车辆声音隐身。根据背衬型,可分为两种,即橡胶板 - 钢 - 空气和橡胶板 - 钢 - 水钢 - 空气,分别称为单壳和双壳背衬涂层。双壳背衬涂层的最显着的吸收特性是其声反射系数响应曲线在一系列尖锐的中性峰值最大值上增加,相应地,吸收系数曲线出现了一系列尖锐的最小值。这种现象是由驻波谐振引起的,该驻波谐振形成在双壳之间的水层间。基于有限元方法,建立了嵌入混合腔的涂层的非旋转对称数值模拟模型,在大腔周围的四个小腔中。研究了单壳和双壳背衬的涂层吸收特性。结果表明,混合腔结构的吸音特性明显优于单腔结构在相同穿孔率的条件下。吸收系数峰可以改善0.2。

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