Influences of elastic foundations on the nonlinear free vibration of composite shells containing carbon nanotubes within shear deformation theory
Abstract
In this work, the solution of nonlinear free vibration problem of composite shells structures containing carbon
nanotubes (CNTs) resting on elastic soils within shear deformation theory (ST) is presented. After modeling the
mechanical properties of nanocomposite shell structures containing CNTs and elastic soils, the basic relations,
and governing equations of double curved shell structures within the ST are established considering the geometric nonlinearity. The frequencies of nonlinear and linear free vibrations and their ratios for inhomogeneous
nanocomposite structures on the soils within the ST are obtained using perturbation method for the first time.
After checking the methodology of the research, the effects of soils, nonlinearity, shear strains and patterns of
CNT on the frequency-amplitude dependence of nanocomposite shell structures for various geometric parameters
are carried out.
Volume
286Collections
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