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首页> 外文期刊>Computer Modeling in Engineering & Sciences >A DRK Interpolation-Based Collocation Method for the Analysis of Functionally Graded Piezoelectric Hollow Cylinders under Electro-Mechanical Loads
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A DRK Interpolation-Based Collocation Method for the Analysis of Functionally Graded Piezoelectric Hollow Cylinders under Electro-Mechanical Loads

机译:基于DRK插值的并置方法分析机电载荷下功能梯度压电空心圆柱体

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摘要

A meshless collocation method based on the differential reproducing kernel (DRK) interpolation is developed for the three-dimensional (3D) coupled analysis of simply-supported, functionally graded (FG) piezoelectric hollow cylinders. The material properties of FG hollow cylinders are regarded as heterogeneous through the thickness coordinate, and then specified to obey an exponent-law dependent on this. In the present formulation, the shape function for the reproducing kernel (RK) interpolation function at each sampling node is separated into a primitive function possessing Kronecker delta properties and an enrichment function constituting reproducing conditions. By means of this DRK interpolation, the essential boundary conditions can be readily applied, exactly like the implementation in the finite element method (FEM). An additional innovation of this meshless method is that the shape functions for derivatives of the RK interpolation functions are determined using a set of differential reproducing conditions, rather than directly differentiating them. In the implementation of the DRK interpolation-based collocation method presented in this work, some crucial parameters are discussed, such as the optimal support size and the highest-order of the basis functions. The influence of the material-property gradient index on the field variables induced in the FG hollow cylinders is also studied.
机译:开发了一种基于微分再生核(DRK)插值的无网格配置方法,用于简单支撑的功能梯度(FG)压电空心圆柱的三维(3D)耦合分析。 FG空心圆柱体的材料特性通过厚度坐标被认为是异质的,然后指定服从于此的指数定律。在本发明中,用于在每个采样节点处的再生核(RK)内插函数的形状函数被分离为具有Kroneckerδ特性的原始函数和构成再现条件的富集函数。通过DRK插值,可以很容易地应用基本边界条件,就像在有限元方法(FEM)中的实现一样。这种无网格方法的另一个创新之处是,RK插值函数的导数的形状函数是使用一组差分再现条件确定的,而不是直接对其进行微分的。在本文提出的基于DRK插值的搭配方法的实现中,讨论了一些关键参数,例如最佳支持大小和基函数的最高阶。还研究了材料特性梯度指数对FG空心圆柱体中感应场变量的影响。

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