This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability of orthotropic temperature-dependent single-layered graphene sheet (SLGS) embedded in a temperature-dependent elastomeric medium and subjected to a biaxially oscillating loading in thermal environment. Possible thermal effects are here considered in the size-dependent governing equations of the problem. These last ones are derived by means of Hamilton’s variational principle combined with the Eringen’s differential constitutive model. Navier’s solution as well as Bolotin’s approach are applied to obtain the dynamic instability region (DIR) of graphene sheet. Thus, a parametric study is carried out to explore the sensitivity of the DIR of the gra...
The deformation behavior of nanocrystalline graphene sheets is investigated by molecular dynamics (M...
The main target of this study is to investigate nonlinear transient responses of moving polymer nano...
This paper presents a novel technique for the nonlinear dynamic instability analysis of graphene-rei...
: This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability o...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
In this study, the vibration behavior of annular and circular graphene sheet coupled with temperatur...
In the present study, the dynamic buckling of the graphene sheet coupled by a viscoelastic matrix wa...
This paper presents the thermal vibration analysis of orthotropic nanoplates such as graphene, using...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
Recently, graphene sheets have shown significant potential for environmental engineering application...
Purpose – This paper aims to present a new one-variable first-order shear deformation theory (OVFSDT)...
Forced vibration of graphene nanoplate based on a refined plate theory in conjunction with higher-or...
This paper studies the dynamic instability of functionally graded multilayer nanocomposite beams rei...
Atomically thin sheets, such as graphene, are widely used in nanotechnology. Recently they have also...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
The deformation behavior of nanocrystalline graphene sheets is investigated by molecular dynamics (M...
The main target of this study is to investigate nonlinear transient responses of moving polymer nano...
This paper presents a novel technique for the nonlinear dynamic instability analysis of graphene-rei...
: This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability o...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
In this study, the vibration behavior of annular and circular graphene sheet coupled with temperatur...
In the present study, the dynamic buckling of the graphene sheet coupled by a viscoelastic matrix wa...
This paper presents the thermal vibration analysis of orthotropic nanoplates such as graphene, using...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
Recently, graphene sheets have shown significant potential for environmental engineering application...
Purpose – This paper aims to present a new one-variable first-order shear deformation theory (OVFSDT)...
Forced vibration of graphene nanoplate based on a refined plate theory in conjunction with higher-or...
This paper studies the dynamic instability of functionally graded multilayer nanocomposite beams rei...
Atomically thin sheets, such as graphene, are widely used in nanotechnology. Recently they have also...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
The deformation behavior of nanocrystalline graphene sheets is investigated by molecular dynamics (M...
The main target of this study is to investigate nonlinear transient responses of moving polymer nano...
This paper presents a novel technique for the nonlinear dynamic instability analysis of graphene-rei...