Meshfree vibrational scrutiny of arbitrary placed straight triple-wire-nanosystems carrying direct electric currents using surface elasticity theory
From MaRDI portal
Publication:2161594
DOI10.1016/j.enganabound.2022.03.025OpenAlexW4224066399MaRDI QIDQ2161594
Keivan Kiani, Jiafeng Chu, Qingjian Jiang
Publication date: 4 August 2022
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.enganabound.2022.03.025
Lorentz forcesurface effectEuler-Bernoulli and Timoshenko beamscurrent-carrying nanowirestriple-nanowire-systems
Related Items (1)
Cites Work
- Coupling effects of nonlocal and surface energy on vibration analysis of nanobeams
- Axial buckling analysis of vertically aligned ensembles of single-walled carbon nanotubes using nonlocal discrete and continuous models
- Elastic buckling of current-carrying double-nanowire systems immersed in a magnetic field
- A continuum theory of elastic material surfaces
- Surface stress in solids
- A size-dependent shear deformation beam model based on the strain gradient elasticity theory
- A reproducing kernel particle method for meshless analysis of microelectromechanical systems
- Harmonic reproducing kernel particle method for free vibration analysis of rotating cylindrical shells.
- Dynamic and static isogeometric analysis for laminated Timoshenko curved microbeams
- Nonlocal-integro-surface energy-vibro analysis of twist in coaxially composite wire-like nanostructures with internal and interfacial defects via a meshless technique
- Nonlinear vibration of buckled nanowires on a compliant substrate
- Thermally induced nonlinear dynamic analysis of temperature-dependent functionally graded flexoelectric nanobeams based on nonlocal simplified strain gradient elasticity theory
- Vibration analysis of 2D-functionally graded nanobeams using the nonlocal theory and meshless method
- Multiresolution reproducing kernel particle method for computational fluid dynamics
- Application of essential boundary conditions in mesh-free methods: a corrected collocation method
- Reproducing kernel particle methods for structural dynamics
- Reproducing kernel particle methods
- Effect of surface layer thickness on buckling and vibration of nonlocal nanowires
This page was built for publication: Meshfree vibrational scrutiny of arbitrary placed straight triple-wire-nanosystems carrying direct electric currents using surface elasticity theory