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Elastic analysis of rectilinear orthotropic composite circular plates subject to transversal and in-plane load conditions using Ritz method

机译:正交各向异性正交圆板在横向和平面载荷条件下的弹性分析

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摘要

An analytical procedure for the analysis of elastic behavior of rectilinear orthotropic composite circular plate subjected to orthogonal and in-plane loads is presented. This kind of plates is composed of fiber-reinforced layers featuring fibers, differently oriented, arranged along rectilinear trajectories; composite lay-ups commonly employed for spot junctions are considered. The constitutive equations for rectilinear orthotropic composite circular plates are derived in the frame of classical lamination theory. The displacement components are determined, according to a novel approach, applying Ritz method to the virtual displacements principle for the load conditions treated in this work. The proposed framework is an approaching step for the theoretical definition of a Spot Joint Element able to simulate spot junctions (bolts, rivets or generic pins) applied to composite plates. To this purpose, displacement constraints deriving from the theoretical reference model of Spot Joint Element are considered. The employment of these specific boundary conditions required the derivation of suitable approximation functions, here reported in parametric form. Analytical results obtained by using the proposed procedure precisely match numerical results obtained by using refined FE models, for different aspect ratios of the plate and different laminate symmetrical lay-ups.
机译:提出了一种正交异性正交圆复合板在正交和面内载荷作用下的弹性行为分析方法。这种板由纤维增强层组成,纤维增强层的特征是沿直线轨迹排列的方向不同的纤维。考虑了通常用于点结的复合铺层。直线正交各向异性复合圆板的本构方程是在经典层合理论的框架内得出的。根据一种新颖的方法,确定位移分量,将Ritz方法应用于虚拟位移原理,以处理此工作中的载荷条件。拟议的框架是对点接合元件进行理论定义的一个接近步骤,该点接合元件能够模拟应用于复合板的点接合点(螺栓,铆钉或通用销)。为此,考虑了源自点接合单元理论参考模型的位移约束。使用这些特定的边界条件需要推导合适的近似函数,此处以参数形式进行报告。对于不同的板长宽比和不同的层压板对称铺层,使用建议的方法获得的分析结果与通过精炼的有限元模型获得的数值结果精确匹配。

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