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Nonlinear thermomechanical deformation behaviour of P-FGM shallow spherical shell panel
Institution:Department of Mechanical Engineering, National Institute of Technology, Rourkela 769008, India
Abstract:In the present article, the linear and the nonlinear deformation behaviour of functionally graded (FG) spherical shell panel are examined under thermomechanical load. The temperature-dependent effective material properties of FG shell panel are evaluated using Voigt’s micro-mechanical rule in conjunction with power-law distribution. The nonlinear mathematical model of the FG shell panel is developed based on higher-order shear deformation theory and Green-Lagrange type geometrical nonlinearity. The desired nonlinear governing equation of the FG shell panel is computed using the variational principle. The model is discretised through suitable nonlinear finite element steps and solved using direct iterative method. The convergence and the val-idation behaviour of the present numerical model are performed to show the efficacy of the model. The effect of different parameters on the nonlinear deformation behaviour of FG spherical shell panel is highlighted by solving numerous examples.
Keywords:Functionally graded mate-rial  Green-Lagrange  Higher-order  Nonlinear deformation  Temperature-dependent
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