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Free vibration analysis of FG-GPLRC L-shaped plates implementing GDQE approach

机译:FG-GPLRC L形板实现GDQE方法的自由振动分析

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摘要

In the current research, application of generalized differential quadrature element (GDQE) method is presented to analyze the free vibration of L-shaped plates. It is considered that the laminated composite plate is reinforced by graphene platelets (GPLs). Furthermore, the GPLs are randomly oriented and uniformly dispersed in each lamina. The GPL weight fraction changes from layer to layer based on the four functionally graded models. To develop the formulation, the effective Young modulus is calculated by means of the Halpin-Tsai micromechanical rule. GDQE method firstly divides total plate domain into three rectangular elements. First order shear deformation theory (FSDT) is employed to estimate the displacement components of each element. Moreover, the Hamilton principle is utilized to extract the motion equations of elements individually. The GDQ tool is applied to each element for separating these regions into sample grid points. Properly applying the compatibility conditions between the elements is a very important factor in the correctness and accuracy of the response. In order to present the validity and accuracy of the outcomes, results are compared with the existing information in the open literature. After that, novel results are demonstrated to examine the effects of GPL weight fraction and distribution, plate geometrical parameters and various boundary conditions on the natural frequencies and corresponding mode shapes of L-shaped plates.
机译:在目前的研究中,提出了广义差分正交元件(GDQE)方法的应用来分析L形板的自由振动。认为层叠复合板通过石墨烯血小板(GPLS)加强。此外,GPLS随机定向并均匀地分散在每个薄片中。基于四个功能分级模型,GPL重量分数从层到层变化。为了开发配方,通过Halpin-Tsai微机械规则计算有效的幼年模量。 GDQE方法首先将总板域分成三个矩形元件。首次剪切变形理论(FSDT)用于估计每个元素的位移组件。此外,汉密尔顿原理用于单独提取元素的运动方程。 GDQ工具应用于用于将这些区域分离成样本网格点的每个元素。适当地应用元素之间的兼容条件是响应的正确性和准确性的非常重要的因素。为了提出结果的有效性和准确性,将结果与公开文学中的现有信息进行比较。之后,证明了新的结果以检查GPL重量分数和分布,板几何参数和各种边界条件对自然频率的影响和L形板的相应模式形状。

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