Pages that link to "Item:Q3619761"
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The following pages link to Application of the higher-order Cauchy-Born rule in mesh-free continuum and multiscale simulation of carbon nanotubes (Q3619761):
Displaying 22 items.
- Numerical validation of a concurrent atomistic-continuum multiscale method and its application to the buckling analysis of carbon nanotubes (Q460850) (← links)
- A computational framework for transverse compression of microtubules based on a higher-order Cauchy-Born rule (Q465713) (← links)
- A mesh-free computational framework for predicting buckling behaviors of single-walled carbon nanocones under axial compression based on the moving Kriging interpolation (Q502493) (← links)
- Analysis of single-walled carbon nanotubes using the moving Kriging interpolation (Q695899) (← links)
- A multiscale projection method for the analysis of carbon nanotubes (Q704524) (← links)
- Multiscale simulation of nanostructures based on spatial secant model: a discrete hyperelastic approach (Q836163) (← links)
- A study on the bending stiffness of single-walled carbon nanotubes and related issues (Q989015) (← links)
- A mesh-free vibration analysis of strain gradient nano-beams (Q1656285) (← links)
- On computational shells with scale effects (Q1669304) (← links)
- Multiresolution molecular mechanics: a unified and consistent framework for general finite element shape functions (Q1669319) (← links)
- The application of mesh-free method in the numerical simulation of beams with the size effect (Q1718730) (← links)
- Characterization of optimal carbon nanotubes under stretching and validation of the Cauchy-Born rule (Q1757149) (← links)
- A meshless approach for electromagnetic simulation of metallic carbon nanotubes (Q1959266) (← links)
- Nonlinear vibration analysis of graphene sheets resting on Winkler-Pasternak elastic foundation using an atomistic-continuum multiscale model (Q2302094) (← links)
- Predicting buckling behavior of microtubules based on an atomistic-continuum model (Q2428454) (← links)
- Mechanical properties of single-walled carbon nanotubes based on higher order Cauchy-Born rule (Q2455892) (← links)
- Modifications to the Cauchy-Born rule: applications in the deformation of single-walled carbon nanotubes (Q2456301) (← links)
- The buckling of single-walled carbon nanotubes upon bending: the higher-order gradient continuum and mesh-free method (Q2638021) (← links)
- Coarse-grained modeling and simulation of graphene sheets based on a discrete hyperelastic approach (Q2952686) (← links)
- A multiscale framework for computational nanomechanics: Application to the modeling of carbon nanotubes (Q3549787) (← links)
- A temperature-related homogenization technique and its implementation in the meshfree particle method for nanoscale simulations (Q3587813) (← links)
- Dynamic response of intrinsic continua for use in biological and molecular modeling: Explicit finite element formulation (Q3649926) (← links)