傅里叶级数
正交异性材料
正弦和余弦变换
边值问题
板块理论
振动
三角级数
材料科学
流离失所(心理学)
刚度
傅里叶正弦余弦级数
傅里叶变换
数学分析
结构工程
数学
有限元法
复合材料
傅里叶分析
物理
工程类
分数阶傅立叶变换
短时傅里叶变换
量子力学
心理治疗师
心理学
作者
Qingshan Wang,Dongyan Shi,Qian Liang,Fazle R. Ahad
标识
DOI:10.1177/0021998316635240
摘要
In this article, the authors presented a unified solution for the dynamic analysis of laminated composite annular, circular, and sector plate with general boundary conditions. The first-order shear deformation theory is employed to formulate the theoretical model. Regardless of the shapes of the plates and the types of boundary conditions, each displacement and rotation component of the elements is expanded as an improved Fourier series expansion which is composed of a double Fourier cosine series and several auxiliary functions introduced to eliminate all the relevant discontinuities with the displacement and its derivatives at the boundaries and to accelerate the convergence of series representations. Since the displacement fields are constructed adequately smooth throughout the entire solution domain, an exact solution is obtained based on the Rayleigh–Ritz procedure by the energy functions of the plates. The accuracy, reliability, and versatility of the current solution is fully demonstrated and verified through numerical examples involving plates with various shapes and boundary conditions. Some new results of free vibration analysis for composite laminated annular sector plate, circular sector plate, annular plate, and circular plate are presented, which may be served as benchmark solution for future computational methods. The effects of the sector angles, layer numbers, and boundary spring stiffness on vibration characteristics of the plates are reported. In addition, the force vibration analysis of the plates is also studied. The influence of the boundary spring stiffness, layer number, orthotropic stiffness ration, and fiber orientation angle on dynamic characteristics of the plates is investigated.
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