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Frequency study on panel type of FG-CNTRC joined conical-conical structures

机译:FG-CNTRC面板类型的频率研究加入锥形圆锥结构

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摘要

In this paper, frequency behavior of the joined conical-conical panels is investigated while the structures are reinforced with uniform or functionally graded (FG) embedment of carbon nanotubes (CNTs). To consider both rotary inertia and in-plane effects, the formulation is developed upon FSDT considerations. By means of Hamilton's principle the dynamic equations for two cones are derived. To attach two individual panels accurately, continuity conditions is performed at the junctions to satisfy the compatibility of displacements and stress resultants. After imposing simply supported boundary conditions at the straight edges, the set of governing equations are discretized meridionally on the basis of generalized differential quadrature (GDQ) technique. The proposed discretization approach is applicable for arbitrary boundary types imposed on the two curved edges at the initiating and terminating points of the structure. The validation of results is primarily assessed via some comparisons between present data and those previous researches in the favor of individual conical panels and also finite element model for joined conical-conical type. Thereafter, the significant roles of semi-vertex angle, embrace angle, CNT parameters and boundary types on the vibrational features are discussed.
机译:在本文中,研究了连接的锥形锥形面板的频率特性,同时用均匀或功能梯度(FG)嵌入碳纳米管(CNT)嵌入结构。要考虑旋转惯性和面内效应,开发了FSDT考虑因素的配方。通过汉密尔顿的原理,推导了两个锥体的动态方程。为了准确地附加两个单独的面板,在结处进行连续性条件,以满足位移和应力结果的兼容性。在直线边缘施加简单地支持的边界条件之后,基于广义差分正交(GDQ)技术的基于广义差分正交(GDQ)技术来分散化的控制方程集。所提出的离散化方法适用于在结构的启动和终止点处施加在两根弯曲边缘的任意边界类型。结果的验证主要通过当前数据和先前研究各个锥形面板的研究以及加入锥形圆锥型的有限元模型的一些比较进行评估。此后,讨论了半顶点角度,接收角度,CNT参数和边界类型的显着作用。

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