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First-order shear deformation analysis of rectilinear orthotropic composite circular plates undergoing transversal loads

机译:正交异性复合圆板承受横向载荷的一阶剪切变形分析

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This work outlines the elastic bending analysis of transversely loaded shear-deformable rectilinear orthotropic composite annular plates. The load condition discussed in the paper, along with the displacement constraints, are derived by the composite bolted joints theoretical reference model - this analytical solution is a necessary effort for the obtainment of a custom finite element capable of simulating this kind of joints with high accuracy and limited computational effort. Firstly, the constitutive equations of the family of plate under investigation are obtained in the framework of the First-order Shear Deformation Plate Theory. The described methodology is founded on the application of the virtual displacements principle and its solution is performed according to Ritz method after the writing of displacement field approximation functions fulfilling the boundary conditions. The three unknown displacement components are obtained for different case studies concerning rectilinear orthotropic composite annular plates featuring various slenderness ratios, shape factors and stacking sequences. The outcomes comparison with FE numerical solutions evidences a high degree of fidelity. The presented results demonstrate that this enhanced version of the Ritz analytical solution method, which accounts for the composite plate shear deformability, can be more effectively employed to describe the displacement field of composite plates connected by a bolted joint in the area surrounding the bolt.
机译:这项工作概述了横向载荷可剪切变形的直线正交各向异性复合环形板的弹性弯曲分析。本文讨论的载荷条件以及位移约束是通过复合螺栓连接理论参考模型得出的-该分析解决方案是获得能够精确模拟此类接头的定制有限元的必要工作且计算量有限。首先,在一阶剪切变形板理论的框架下,获得了所研究板类的本构方程。所描述的方法是基于虚拟位移原理的应用,其解决方案是在写出满足边界条件的位移场逼近函数之后,根据Ritz方法执行的。针对具有不同细长比,形状因数和堆积顺序的直线正交各向异性复合环形板的不同案例研究,获得了三个未知的位移分量。与有限元数值解的结果比较表明高度保真。提出的结果表明,这种增强型的Ritz分析解决方案方法解决了复合板的剪切变形问题,可以更有效地用于描述在螺栓周围区域中通过螺栓连接连接的复合板的位移场。

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