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The transmission of an acoustic wave through a rectangular plate between barriers

机译:声波通过壁垒之间的矩形板的传输

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The problem of the forced vibrations of a rectangular elastic plate hinged to the sides of an opening in an absolutely stiff partition upon the transmission of a monoharmonic acoustic wave through it is considered. It is assumed that the partition is located between two absolutely stiff barriers, one of which forms an acoustic wave that is incident to the plate due to harmonic vibrations with an assigned displacement amplitude, while the other barrier is fixed and has a deformable energy-absorbing coating made from a material with high damping properties. The behaviour of acoustic media in spaces between a deformable plate and barriers is described by classical wave equations based on the model of an ideal compressible fluid, and the mechanics of the deformation of the plate are described by the equations of motion from the classical linear plate theory with consideration of the internal friction of the plate material according to the Thompson-Kelvin-Voigt hysteretic model. To describe the process of the dynamic deformation of an energy-absorbing coating on a fixed barrier, two-dimensional equations of motion based on the use of a model of a transversely soft layer, a linear approximation of the displacement fields in the direction of the thickness of the coating and consideration of the damping properties of its material also according to the hysteretic model are derived. Analytical solutions of the problem are found with and without consideration of the compliance of the supporting elements of the plate. The influence of the physicomechanical parameters of the mechanical system under consideration on the sound reduction parameters of the plate and the sound pressure in the spaces between the plate and the barriers, as well as of the stress-strain state under forced vibrations of the plate as a function of the frequency of the acoustic wave incident to it, is investigated. It is shown that the mechanical behaviour of the plate in the vicinity of resonance frequencies depends practically completely on the aerodynamic damping and that for stiff building materials, which have, as a rule, small values of the logarithmic decrement of the vibrations, taking into account the internal damping has an insignificant influence on the parameters investigated of the system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑了在单谐波声波通过矩形弹性板铰接在绝对坚硬的隔板中的开口的侧面上的强迫振动的问题。假定隔板位于两个绝对刚性的壁垒之间,其中一个壁垒由于谐波振动以指定的位移幅度而形成入射到板的声波,而另一个壁垒是固定的并且具有可变形的能量吸收由具有高阻尼特性的材料制成的涂层。基于理想可压缩流体的模型,通过经典波动方程描述了可变形板与障碍之间空间中的声学介质的行为,并通过来自经典线性板的运动方程来描述了板的变形机理。根据Thompson-Kelvin-Voigt滞后模型考虑板材的内部摩擦理论。为了描述固定壁障上能量吸收涂层的动态变形过程,基于横向软层模型的二维运动方程,沿位移方向的线性近似位移场还根据滞后模型推导了涂层的厚度并考虑了其材料的阻尼特性。在不考虑板的支撑元件的顺应性的情况下,找到了问题的解析解决方案。所考虑的机械系统的物理力学参数对板的减声参数和板与屏障之间空间中的声压以及在板的强制振动下的应力-应变状态的影响如下:研究了入射声波频率的函数。结果表明,在共振频率附近,板的机械性能实际上完全取决于空气动力学阻尼,而对于刚性建筑材料,通常考虑到振动的对数值的较小值,这取决于刚性。内部阻尼对系统研究的参数影响不大。 (C)2017 Elsevier Ltd.保留所有权利。

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