We present a molecular dynamics simulation study on the effects of crack formation on the mechanical properties of bilayer graphene. Bilayer graphene possesses unique electronic properties that can be modified by applying a voltage, making it an attractive material for various applications. We examined how the mechanical properties of bilayer graphene vary under various crack configurations and temperatures, measuring Young's modulus, fracture toughness, fracture strain, and fracture stress. We compared the effect of crack presence on single and both layers and found the appearance of double peaks in the stress-strain curves in the case of a monolayer crack, indicating a subsequent fracture of the cracked layer and the uncracked layer. We a...
581-587The fracture behavior of single layer graphene sheet (SLGS) has been a subject of intensive r...
The crack initiation and growth mechanisms in an 2D graphene lattice structure are studied based on ...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
We present a molecular dynamics simulation study on the effects of crack formation on the mechanical...
Graphene is one of the most important nanomaterials. The twisted bilayer graphene shows superior ele...
Graphene is a type of 2D material with unique properties and promising applications. Fracture toughn...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Peridynamics (PD) is employed to model the fracture of pre-cracked graphene sheets under mode-I load...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
Abstract A molecular dynamics (MD) simulation to assess the effect of crack length on the ultimate t...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
The crack initiation and growth mechanisms in an 2D graphene lattice structure are studied based on ...
581-587The fracture behavior of single layer graphene sheet (SLGS) has been a subject of intensive r...
The crack initiation and growth mechanisms in an 2D graphene lattice structure are studied based on ...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
We present a molecular dynamics simulation study on the effects of crack formation on the mechanical...
Graphene is one of the most important nanomaterials. The twisted bilayer graphene shows superior ele...
Graphene is a type of 2D material with unique properties and promising applications. Fracture toughn...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The phenomenon of self healing of cracks in bilayer graphene sheet has been studied using molecular ...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Peridynamics (PD) is employed to model the fracture of pre-cracked graphene sheets under mode-I load...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
Abstract A molecular dynamics (MD) simulation to assess the effect of crack length on the ultimate t...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
The crack initiation and growth mechanisms in an 2D graphene lattice structure are studied based on ...
581-587The fracture behavior of single layer graphene sheet (SLGS) has been a subject of intensive r...
The crack initiation and growth mechanisms in an 2D graphene lattice structure are studied based on ...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...