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- W1812884025 abstract "In this paper, a cell-based smoothed finite element method wi th discrete shear gap technique for triangular elements is employed to study the linear flutter characteristic s of functionally graded material (FGM) flat panels. The influence of thermal environment, the presence of a centr ally located circular cutout and the aerodynamic damping on the supersonic flutter characteristics of flat FGM panels is also investigated. The structural formulation is based on the first-order shear deformation theor y and the material properties are assumed to be temperature dependent and graded only in the thickness direction according to power law distribution in terms of the volume fraction of its constituent materials. The aer odynamic force is evaluated by considering the first order high mach number approximation to linear potential flo w theory. The formulation includes transverse shear deformation and in-plane and rotary inertia effects. The influence of the plate thickness, aspect ratio, boundary conditions, material gradient index, temperature dependent material properties, damping, cutout size, skewness of the plate and boundary conditions on the critical aerodynamic pressure is numerically studied." @default.
- W1812884025 created "2016-06-24" @default.
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- W1812884025 date "2013-06-20" @default.
- W1812884025 modified "2023-09-27" @default.
- W1812884025 title "Linear flutter analysis of functionally graded panels using cell based smoothed finite element method and discrete shear gap technique" @default.
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- W1812884025 doi "https://doi.org/10.1166/jcmsd.2013.1014" @default.
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