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Nonlinear vibrations of graphene-reinforced porous rotating conical shell with arbitrary boundary conditions using traveling wave vibration analysis

By A Mystery Man Writer

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

Wei ZHANG, Professor, PhD, Beijing University of Technology, Beijing, Bei Gong Da, Department of Mechanics

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

Nonlinear vibrations of graphene-reinforced porous rotating conical shell with arbitrary boundary conditions using traveling wave vibration analysis

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

In-plane displacement throughout the laminate's plate thickness

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

Cross section of the spherical coated particle in the matrix

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

The scheme of HM-carbon fiber nanocomposite joined

Nonlinear vibrations of graphene-reinforced porous rotating conical shell  with arbitrary boundary conditions using traveling wave vibration analysis

The dynamic model of the functionally graded graphene platelet