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首页> 外文期刊>Journal of vibration and control: JVC >Three-dimensional free vibration analysis of functionally graded carbon nanotube-reinforced composite plates with various boundary conditions
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Three-dimensional free vibration analysis of functionally graded carbon nanotube-reinforced composite plates with various boundary conditions

机译:功能梯度碳纳米管增强复合板在各种边界条件下的三维自由振动分析

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A unified formulation of finite prism methods (FPMs) based on Reissner's mixed variational theorem is developed for the three-dimensional (3D) free vibration analysis of functionally graded (FG) carbon nanotube-reinforced composite (CNTRC) plates and laminated fiber-reinforced composite (FRC) plates, the edge conditions of which are considered such that one pair of opposite edges is simply supported and the other pair may be combinations of free, clamped or simply supported edges. The single-walled carbon nanotubes (CNTs) and polymer are regarded as the reinforcements and matrices, respectively, to produce the CNTRC plate. Four different distributions of CNTs varying in the thickness direction are considered (i.e. the uniformly distributed, and FG V-, rhombus-, and X-type variations), and the through-thickness distributions of effective material properties of the CNTRC plate are determined using the rule of mixtures. In the formulation, the CNTRC/FRC plate is divided into a number of finite prisms in the x- domain, in which the trigonometric functions and Lagrange polynomials are used to interpolate the y-direction and x- plane variations for the primary variables of each individual prism, respectively, and the related orders used for expansion of assorted primary variables in the thickness coordinate can be freely chosen. It is shown that the eight- and nine-node quadratic FPM solutions of frequency parameters of simply supported, CNTRC plates and laminated FRC plates are in excellent agreement with the exact 3D solutions available in the literature, and with the ones obtained using the ANSYS software for those plates with various boundary conditions.
机译:开发了基于Reissner混合变分定理的有限棱镜方法(FPM)的统一公式,用于功能梯度(FG)碳纳米管增强复合材料(CNTRC)板和纤维增强层压复合材料的三维(3D)自由振动分析(FRC)板,考虑其边缘条件,以便简单地支撑一对相对的边缘,而另一对可以是自由,夹紧或简单支撑的边缘的组合。将单壁碳纳米管(CNT)和聚合物分别视为增强材料和基体,以生产CNTRC板。考虑沿厚度方向变化的四种不同的CNT分布(即均匀分布和FG V型,菱形和X型变化),并使用以下方法确定CNTRC板的有效材料性能的全厚度分布混合规则。在公式中,CNTRC / FRC板在x域中划分为多个有限棱镜,其中三角函数和Lagrange多项式用于对每个变量的主要变量的y方向和x平面变化进行插值可以分别选择单个棱镜,并且可以自由选择用于扩展厚度坐标中各种主变量的相关顺序。结果表明,简单支撑的CNTRC板和层压FRC板的频率参数的八节点和九节点二次FPM解决方案与文献中提供的精确3D解决方案以及使用ANSYS软件获得的精确3D解决方案极为吻合对于具有各种边界条件的那些板。

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