Pages that link to "Item:Q2382440"
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The following pages link to The effects of chirality and boundary conditions on the mechanical properties of single-walled carbon nanotubes (Q2382440):
Displaying 18 items.
- Atomistic-continuum modeling for mechanical properties of single-walled carbon nanotubes (Q546645) (← links)
- The influence of mechanical deformation on the electrical properties of single wall carbon nanotubes (Q597747) (← links)
- A novel nonlinear constitutive relation for graphene and its consequence for developing closed-form expressions for Young's modulus and critical buckling strain of single-walled carbon nanotubes (Q645333) (← links)
- Specific heat of super carbon nanotube and its chirality independence (Q646929) (← links)
- Length dependence of critical measures in single-walled carbon nanotubes (Q837488) (← links)
- Deformation of metallic single-walled carbon nanotubes in electric field based on elastic theory (Q968280) (← links)
- Atomistic-based continuum modeling of the nonlinear behavior of carbon nanotubes (Q977739) (← links)
- A study on the bending stiffness of single-walled carbon nanotubes and related issues (Q989015) (← links)
- Concurrent quantum/continuum coupling analysis of nanostructures (Q1013876) (← links)
- Measuring elastic property of single-walled carbon nanotubes by nanoindentation: A theoretical framework (Q1017534) (← links)
- Effect of the Stone-Wales defect on the structure and mechanical properties of single-wall carbon nanotubes in axial stretch and twist (Q1044292) (← links)
- On a nanoscopically-informed shell theory of single-wall carbon nanotubes (Q1668381) (← links)
- A shell theory for chiral single-wall carbon nanotubes (Q1669408) (← links)
- Characterization of optimal carbon nanotubes under stretching and validation of the Cauchy-Born rule (Q1757149) (← links)
- Mechanical properties of single-walled carbon nanotube bundles as bulk materials (Q2583737) (← links)
- Prediction of chirality- and size-dependent elastic properties of single-walled carbon nanotubes via a molecular mechanics model (Q3502044) (← links)
- Chirality-Dependent Mechanical Behavior of Carbon Nanotubes Based on an Anisotropic Elastic Shell Model (Q4905408) (← links)
- Phonons in chiral nanorods and nanotubes: A Cosserat-rod-based continuum approach (Q5132446) (← links)