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首页> 外文期刊>Modern Applied Science >Study on Characteristics of Sound Absorption of Underwater Visco-elastic Coated Compound Structures
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Study on Characteristics of Sound Absorption of Underwater Visco-elastic Coated Compound Structures

机译:水下粘弹性涂层复合结构吸声特性研究

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Visco-elastic damping materials containing kinds of air-filled, fluid-filled microspheres or cylindrical cavities have been widely used in various areas involving the coating of water-borne structure to reduce acoustic echoes to active sonar systems. As a special damping material, rubber has attracted great interest in the field of vibration and noise for its low Young’s modulus and high strain recovery features. Based on wave transfer propagation theory in infinite layered medium, sound absorption performance for underwater compound damping structures is investigated using transfer matrix method. A new anechoic coating containing different varying sectional cavities is proposed. Simulation results show that the new anechoic coating keeps good absorption performance in high frequency and its sound absorption coefficient is increased notably in low frequency. Simulations also show that the property of rubber material influences structural sound absorption greatly. Soft rubber as well as those with large loss factor may improve sound absorption performance of the whole structure remarkably. New anechoic coating containing varying sectional cavities have great advantages over the uniform compound structures. It's a good way to make different varying sectional cavities inside multi-layered rubber compound structures for improving sound absorption property. The sound absorption coefficient can be modulated by changing the thickness of the three different varying sectional cavities, and not the more the cavities are, the better sound absorption will achieve. As a new kind of complex multilayered rubber compound structures, compound structure containing varying sectional cavities has better sound absorption property than rubber interlayer with cylindrical cavities compound structure and homogeneous rubber compound structure.
机译:包含各种充满空气,充满流体的微球或圆柱形空腔的粘弹性阻尼材料已广泛应用于涉及水基结构涂层的各种领域,以减少对有源声纳系统的回声。作为一种特殊的阻尼材料,橡胶因其低的杨氏模量和高的应变恢复特性而在振动和噪声领域引起了极大的兴趣。基于波在无限层状介质中的传播理论,采用传递矩阵法研究了水下复合阻尼结构的吸声性能。提出了一种新的消声涂层,其包含不同的截面空腔。仿真结果表明,新型消声涂层在高频下保持良好的吸收性能,在低频下吸声系数显着提高。仿真还表明,橡胶材料的性能对结构吸声有很大影响。柔软的橡胶以及损耗因子大的橡胶可以显着改善整个结构的吸声性能。与均匀的复合结构相比,包含不同截面空腔的新型消声涂层具有很大的优势。这是在多层橡胶混料结构中制作不同变化的截面空腔以改善吸声性能的好方法。可以通过改变三个不同的变化型腔的厚度来调节吸声系数,并且如果腔的数量不多,则吸声效果会更好。作为一种新型的复杂的多层胶料结构,具有不同截面空腔的胶料结构的吸声性能优于具有圆筒形空腔胶料结构和均质胶料结构的橡胶夹层。

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