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RMVT-based meshless collocation and element-free Galerkin methods for the quasi-3D free vibration analysis of multilayered composite and FGM plates

机译:基于RMVT的无网格搭配和无元素Galerkin方法用于多层复合材料和FGM板的准3D自由振动分析

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摘要

A meshless collocation (MC) and an element-free Galerkin (EFG) method, using the differential reproducing kernel (DRK) interpolation, are developed for the quasi-three-dimensional (3D) free vibration analysis of simply supported, multilayered composite and functionally graded material (FGM) plates. Based on the Reissner Mixed Variational Theorem (RMVT), the strong and weak formulations of this problem are derived, in which the material properties of each individual FGM layer, constituting the plate, are assumed to obey the power-law distributions of the volume fractions of the constituents. The system motion equations of both the RMVT-based MC and EFG methods are obtained using these strong and weak formulations, respectively, in combination with the DRK interpolation, in which the shape functions of the unknown functions satisfy the Kronecker delta properties, and the essential boundary conditions can be readily applied, exactly like the implementation in the finite element method. In the illustrative examples, the natural frequencies and their corresponding modal field variables varying along the thickness coordinate of the plate are studied. It is shown that the solutions obtained using these methods are in excellent agreement with the available 3D solutions, and their convergence rates are rapid.
机译:使用微分再现核(DRK)插值技术开发了无网格搭配(MC)和无元素Galerkin(EFG)方法,用于简单支撑,多层复合材料和功能上的准三维(3D)自由振动分析梯度材料(FGM)板。基于Reissner混合变分定理(RMVT),得出了该问题的强和弱公式,其中假定构成板的每个单独FGM层的材料属性服从体积分数的幂律分布的成分。基于RMVT的MC和EFG方法的系统运动方程分别是使用这些强公式和弱公式,结合DRK插值获得的,其中未知函数的形状函数满足Kronecker增量属性,并且基本边界条件可以很容易地应用,就像有限元方法中的实现一样。在说明性示例中,研究了沿板厚度坐标变化的固有频率及其相应的模态场变量。结果表明,使用这些方法获得的解决方案与可用的3D解决方案非常吻合,并且收敛速度很快。

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