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A combined theoretical and experimental investigation on free vibration of thin symmetrically laminated anisotropic plates

机译:对称薄板各向异性各向异性板自由振动的理论与实验组合研究

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摘要

A generalized boundary-continuous displacement based double Fourier series solution to the boundary-value problem of free vibration of thin anisotropic fiber reinforced plastic (FRP) rectangular plates is presented. The transverse vibrational characteristics of laminated anisotropic plates with arbitrary combinations of admissible boundary conditions are theoretically investigated. Numerical results presented here pertain to the natural or resonant frequencies of five-layer symmetric cross-ply plates with all edges clamped, and rotated cross-ply anisotropic plates with all edges simply supported, which are, in turn compared with the corresponding experimental results for two sets of glass fiber reinforced plastic (GFRP) thin anisotropic rectangular plates, fabricated using two different techniques. The influence of possible defects generally encountered in the fabrication process on the experimentally obtained resonant frequencies is also discussed here.
机译:提出了一种基于各向异性边界连续位移的双傅里叶级数解,用于求解各向异性矩形薄板(FRP)矩形板自由振动的边值问题。从理论上研究了具有任意边界条件组合的各向异性各向异性板的横向振动特性。此处给出的数值结果与夹着所有边缘的五层对称交叉层板的固有频率或共振频率有关,而仅支撑所有边缘的旋转交叉层各向异性板的固有频率或共振频率,则分别与相应的实验结果进行了比较。两组使用两种不同技术制造的玻璃纤维增​​强塑料(GFRP)各向异性薄板。这里还将讨论在制造过程中通常遇到的可能缺陷对实验获得的谐振频率的影响。

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