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Study on vibro-acoustic property of composite laminated rotary plate-cavity system based on a simplified plate theory and experimental method

机译:基于简化板理论和实验方法的复合层压旋转板腔系统振动声学性能研究

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摘要

Effective combination of simplified plate theory (SPT) and the improved Fourier-Ritz method, a unified analytical model for the vibro-acoustic property of a laminated rotary plate coupling with an impedance cavity under complex boundary conditions is established in the investigation. The structure-acoustic coupling potential energy generated by the interaction between the flexible laminated plate and the cavity at the interface is added into the energy functional of the structure domain and the acoustic domain, and the energy functional of the platecavity coupling system is obtained. The solution equation of the vibro-acoustic coupling property can be gained through Rayleigh-Ritz energy technique. Besides, by introducing external force or internal sound source, the coupling mechanism between the flexible plate and the cavity is explained thoroughly from two aspects. By comparing the results calculated by the classical plate theory (CPT), the finite element method (FEM), the first-order shear deformation theory (FSDT) and Experimental test, the applicability and accuracy of SPT in analyzing the rotary laminated plate-cavity coupling system are verified. Besides, the effects of geometric parameters, material parameters, elastic boundary conditions, acoustic medium on the coupling system are mainly studied, which provides theoretical guidance for the design and noise control of such engineering structures.
机译:在调查中,建立了在调查中建立了在复杂边界条件下与阻抗腔的层压旋转板联接器的层压旋转板联接器的vibro声性能的统一分析模型的有效组合。通过柔性层压板和界面处的腔之间的相互作用产生的结构声耦合电位能量被添加到结构域和声域的能量功能中,并且获得了凝结性耦合系统的能量功能。可以通过瑞利-Ritz能量技术获得振动声耦合特性的溶液方程。此外,通过引入外力或内部声源,从两个方面彻底解释柔性板和腔之间的耦合机构。通过比较由经典板理论(CPT)计算的结果,有限元方法(FEM),一阶剪切变形理论(FSDT)和实验测试,SPT在分析旋转层压板腔时的适用性和准确性验证耦合系统。此外,主要研究了几何参数,材料参数,弹性边界条件,耦合系统上的声学介质的影响,这为这种工程结构的设计和噪声控制提供了理论指导。

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