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Asymmetric thermal buckling of temperature dependent annular FGM plates on a partial elastic foundation

机译:局部弹性基础上温度相关的环形FGM板的不对称热屈曲

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摘要

In this investigation, the asymmetrical buckling behaviour of FGM annular plates resting on partial Winkler-type elastic foundation under uniform temperature elevation is investigated. Material properties of the plate are assumed to be temperature dependent. Each property of the plate is graded across the thickness direction using a power law function. First order shear deformation plate theory and von Karman type of geometrical nonlinearity are used to obtain the equilibrium equations and the associated boundary conditions. Prebuckling deformations and stresses of the plate are obtained considering the deflection-less conditions. Only plates which are clamped on both inner and outer edges are considered. Applying the adjacent equilibrium criterion, the linearised stability equations are obtained. The governing equations are divided into two sets. The first set, which is associated with the in-contact region and the second set which is related to contact-less region. The resulting equations are solved using a hybrid method, including the analytical trigonometric functions through the circumferential direction and generalised differential quadratures method through the radial direction. The resulting system of eigenvalue problem is solved iteratively to obtain the critical conditions of the plate, the associated circumferential mode number and buckled shape of the plate. Benchmark results are given in tabular and graphical presentations dealing with critical buckling temperature and buckled shape of the plate. Numerical results are given to explore the effects of elastic foundation, foundation radius, plate thickness, plate hole size, and power law index of the graded plate. It is shown that, stiffness foundation, and radius of foundation may change the buckled shape of the plate in both circumferential and radial directions. Furthermore, as the stiffness of the foundation or radius of foundation increases, critical buckling temperature of the plate enhances.
机译:在这项研究中,研究了均匀温度升高下部分温克勒型弹性地基上的FGM环形板的不对称屈曲行为。假定板的材料特性与温度有关。使用幂律函数在整个厚度方向上对板的每个属性进行分级。利用一阶剪切变形板理论和von Karman类型的几何非线性来获得平衡方程和相关的边界条件。考虑到无挠度条件,可以获得板的预屈曲变形和应力。仅考虑在内外边缘都夹紧的板。应用相邻均衡准则,得到线性化的稳定性方程。控制方程分为两组。第一组与接触内区域相关联,第二组与非接触区域相关。使用混合方法求解所得方程,包括通过圆周方向的解析三角函数和通过径向方向的广义微分正交方法。迭代求解所得的特征值系统,以获取板的临界条件,相关的圆周模式编号和板的弯曲形状。基准结果以表格和图形形式给出,涉及临界屈曲温度和板的弯曲形状。给出了数值结果,以探讨弹性地基,地基半径,板厚,板孔尺寸和梯度板的幂律指数的影响。结果表明,刚度基础和基础半径可能会在圆周方向和径向方向上改变板的弯曲形状。此外,随着基础的刚度或基础的半径增加,板的临界屈曲温度提高。

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