Vacancy defects are unavoidable in graphene sheets, and the random distribution of vacancy defects has a significant influence on the mechanical properties of graphene. This leads to a crucial issue in the research on nanomaterials. Previous methods, including the molecular dynamics theory and the continuous medium mechanics, have limitations in solving this problem. In this study, the Monte Carlo-based finite element method, one of the stochastic finite element methods, is proposed and simulated to analyze the buckling behavior of vacancy-defected graphene. The critical buckling stress of vacancy-defected graphene sheets deviated within a certain range. The histogram and regression graphs of the probability density distribution are also pr...
The paper is devoted to the problems related to buckling analysis of graphene sheets without and wit...
Different types of defects can be introduced into graphene during material synthesis, and significan...
Crack propagation in a defected graphene sheet is investigated at finite temperature using molecular...
Vacancy defects are unavoidable in graphene sheets, and the random distribution of vacancy defects h...
The stochastic distributed placement of vacancy defects has evident effects on graphene mechanical p...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
Graphene is the strongest material but its performance is significantly weakened by vacancy defects....
In the present research, imperfect graphene sheets were generated and their vibrational property was...
Graphene can now be found in many different technologies, with new and innovative products expected ...
Despite the unique occurrences of structural defects in graphene synthesis, the fracture mechanism o...
Graphene is the strongest material ever discovered and has an extremely high Young's modulus (~ 1 GP...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
The paper at hand deals with the single layered graphene sheets. In particular, the influence of the...
Due to their remarkable properties, carbon nanotubes have been used in many engineering applications...
The paper is devoted to the problems related to buckling analysis of graphene sheets without and wit...
Different types of defects can be introduced into graphene during material synthesis, and significan...
Crack propagation in a defected graphene sheet is investigated at finite temperature using molecular...
Vacancy defects are unavoidable in graphene sheets, and the random distribution of vacancy defects h...
The stochastic distributed placement of vacancy defects has evident effects on graphene mechanical p...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
Graphene is the strongest material but its performance is significantly weakened by vacancy defects....
In the present research, imperfect graphene sheets were generated and their vibrational property was...
Graphene can now be found in many different technologies, with new and innovative products expected ...
Despite the unique occurrences of structural defects in graphene synthesis, the fracture mechanism o...
Graphene is the strongest material ever discovered and has an extremely high Young's modulus (~ 1 GP...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
The paper at hand deals with the single layered graphene sheets. In particular, the influence of the...
Due to their remarkable properties, carbon nanotubes have been used in many engineering applications...
The paper is devoted to the problems related to buckling analysis of graphene sheets without and wit...
Different types of defects can be introduced into graphene during material synthesis, and significan...
Crack propagation in a defected graphene sheet is investigated at finite temperature using molecular...