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Finite element analysis for thermal buckling behaviour in functionally graded plates with cut-outs

机译:带有切口的功能梯度板中热屈曲行为的有限元分析

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摘要

Finite element formulation for the thermal buckling of moderately thick rectangular functionally graded material (FGM) plates is developed. This is based on the first order shear deformation theory (FSDT). One dimensional heat conduction equation is employed to represent the temperature distribution across thickness of the FGM plate. Material properties of the plate are considered to be function of temperature. It is assumed that the material properties of the FGM plate vary as a power function along the plate thickness. Finite element code is developed and computation of critical thermal buckling temperature of the FGM plates is carried out. The developed finite element computer code is validated with the results available in the literature. Further, finite element analysis is carried out to determine the thermal buckling of rectangular FGM plates with circular cutout. In the present work effects of (i) plate aspect ratio, (ii) plate thickness to side ratio, (iii) power index x2018;kx2019; (iv) size of the cutout and (v) the three different boundary conditions on the critical buckling temperature are being investigated.
机译:开发了用于中厚矩形功能梯度材料(FGM)板热屈曲的有限元公式。这基于一阶剪切变形理论(FSDT)。采用一维热传导方程式表示FGM板厚度上的温度分布。板的材料特性被认为是温度的函数。假设FGM板的材料特性沿板厚随功率函数而变化。开发了有限元代码,并计算了FGM板的临界热屈曲温度。所开发的有限元计算机代码已用文献中的结果进行了验证。此外,进行了有限元分析,以确定具有圆形切口的矩形FGM板的热屈曲。在当前的工作效果中,(i)板的纵横比,(ii)板的厚度与侧面的比例,(iii)功率指数x2018; kx2019; (iv)切口的大小和(v)临界屈曲温度的三种不同边界条件正在研究中。

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  • 年度 2008
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