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FREE VIBRATION ANALYSIS OF FUNCTIONALLY GRADED HEMISPHERICAL SHELL WITH CUT-OUT AT APEX

机译:用剪切在顶点的功能渐变半球壳的自由振动分析

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In this article, a finite element formulation based on First Order Shear Deformation Theory (FSDT) is used for the study of free vibration behaviour of FGM hemispherical shells with a cut-out at apex in thermal environment. A Fourier series expansion for the displacement variable in the circumferential direction is used to model the FGM hemispherical shell. The material properties of FGM hemispherical shells are functionally graded in the thickness direction according to volume fraction power law distribution. Temperature dependent material properties are considered to carry out a free vibration analysis. Numerical studies include the influence of, power law index, base to radius ratios, and different cut-out angle at apex on the magnitude of free vibration behaviour. Analysis has been carried out for hemispherical shell with clamped-clamped and clamped-free boundary conditions. It is seen that FGMs shell exhibits interesting frequency characteristics, as constitutive volume fraction varies by varying in power law index. The numerical results confirm that the vibration characteristics are significantly influenced by material composition, which in turn governs the power law index and hemispherical shell geometry.
机译:在本文中,基于第一阶剪切变形理论(FSDT)的有限元配方用于研究FGM半球形壳体的自由振动行为,在热环境中具有切口。圆周方向上的位移变量的傅里叶串联膨胀用于模拟FGM半球形壳体。根据体积分数电力法分布,FGM半球形壳的材料特性在厚度方向上在厚度方向上在功能上梯度。温度依赖性材料特性被认为进行自由振动分析。数值研究包括,电力法指数,基部到半径比的影响以及在游离振动行为的大小的顶点上的不同切口角度。已经进行了夹紧夹紧和夹紧边界条件的半球壳进行分析。可以看出,FGMS壳表现出有趣的频率特性,因为通过电力法指数变化,本构体载体馏分变化。数值结果证实,振动特性受到材料组合物的显着影响,这反过来又控制了电力法指数和半球形壳几何形状。

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