In this study, the vibration behavior of annular and circular graphene sheet coupled with temperature change and under in-plane pre-stressed is studied. Influence of the surrounding elastic medium 011 the fundamental frequencies of the single-layered graphene sheets (SLGSs) is investigated. Both Winkler-type and Pasternak- type models are employed to simulate the interaction of the graphene sheets with a surrounding elastic medium. By using the nonlocal elasticity theory the governing equation is derived for SLGSs. The closed-form solution for frequency vibration of circular graphene sheets lias been obtained and nonlocal parameter, inplane pre-stressed, the parameters of elastic medium and temperature change appears into arguments of Besse...
This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability of ...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
Graphene sheets are widely applied due to their unique and highly valuable properties, such as energ...
This paper analyzes the thermo-vibration response of a graphene sheet excited with a uniform harmoni...
In this research work, the flexural vibration of graphene sheet nanostructures is modeled and studie...
In this study, the vibrational properties of single- and double-layer graphene sheets (GSs) with att...
This paper presents the thermal vibration analysis of orthotropic nanoplates such as graphene, using...
Detailed studies on the nanoscale vibration characteristics of multi-layered graphene sheets (MLGSs)...
We investigate the vibrational properties of zigzag and armchair single-layer graphene sheets (SLGSs...
: This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability o...
In last decade, nanoplates were used in various types of industries such as electronics, aircraft, s...
Nonlocal vibration of a double-nanoplate-system is considered. The two nanoplates are assumed to be ...
This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability of ...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
Graphene sheets are widely applied due to their unique and highly valuable properties, such as energ...
This paper analyzes the thermo-vibration response of a graphene sheet excited with a uniform harmoni...
In this research work, the flexural vibration of graphene sheet nanostructures is modeled and studie...
In this study, the vibrational properties of single- and double-layer graphene sheets (GSs) with att...
This paper presents the thermal vibration analysis of orthotropic nanoplates such as graphene, using...
Detailed studies on the nanoscale vibration characteristics of multi-layered graphene sheets (MLGSs)...
We investigate the vibrational properties of zigzag and armchair single-layer graphene sheets (SLGSs...
: This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability o...
In last decade, nanoplates were used in various types of industries such as electronics, aircraft, s...
Nonlocal vibration of a double-nanoplate-system is considered. The two nanoplates are assumed to be ...
This work applies the first-order shear deformation theory (FSDT) to study the dynamic stability of ...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...