Buckling and vibration of axially functionally graded nonuniform beams using differential transformation based dynamic stiffness approach

被引:0
|
作者
S. Rajasekaran
机构
[1] PSG College of Technology,
来源
Meccanica | 2013年 / 48卷
关键词
Timoshenko beam; Euler beam; Bending stiffness; Mass density; Functionally graded material; Nonuniform beam;
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摘要
The free vibration of axially functionally graded (FG) non-uniform beams with different boundary conditions is studied using Differential Transformation (DT) based Dynamic Stiffness approach. This method is capable of modeling any beam (Timoshenko or Euler, centrifugally stiffened or not) whose cross sectional area, moment of Inertia and material properties vary along the beam. The effectiveness of the method is confirmed by comparing the present results with existing closed form solutions and numerical results. In FG beams, flexural rigidity and mass density may take majority of functions including polynomials, trigonometric and exponential functions (converted to polynomial expressions). DT based Dynamic stiffness approach is proved to be a versatile and simple approach compared to many other methods already proposed.
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页码:1053 / 1070
页数:17
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