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A semi-analytical element-free galerkin method for the 3D free vibration analysis of multilayered FGM circular hollow cylinders

机译:多层FGM圆形空心圆柱的3D自由振动分析的半解析无元素Galerkin方法

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摘要

A semi-analytical element-free Galerkin (EFG) method in conjunction with an earlier proposed differential reproducing kernel (DRK) interpolation is developed for the three-dimensional (3D) free vibration analysis of simply supported, multilayered composite and functionally graded material (FGM) circular hollow cylinders. Based on the Reissner's mixed var-iational theorem (RMVT), the weak formulation of this 3D dynamic problem is derived, in which the material properties of each individual FGM layer are assumed to obey the power-law distributions of the volume fractions of the constituents through the thickness coordinate of the layer. A parametric study of the influence of some geometric and material parameters, such as the radius-to-thickness and length-to-radius ratios, thickness ratio for each layer, and material-property gradient index, on the natural frequency parameters of multilayered FGM circular hollow cylinders is undertaken.
机译:针对简单支撑的多层复合材料和功能梯度材料(FGM)的三维(3D)自由振动分析,开发了一种半分析无元素Galerkin(EFG)方法以及较早提出的差分再现核(DRK)插值方法。 )圆形空心圆柱。基于Reissner的混合变分定理(RMVT),推导了此3D动态问题的弱公式,其中假定每个FGM层的材料属性服从各成分的体积分数的幂律分布通过层的厚度坐标。对某些几何和材料参数(例如半径与厚度和长度与半径之比,每一层的厚度比以及材料特性梯度指数)对多层FGM固有频率参数的影响进行参数研究使用圆形空心圆柱。

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