Impact dynamics of single-layered graphene sheets in multibody framework using nonlocal-based-ANCF modeling
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Publication:6493282
DOI10.1142/S0219455419500998WikidataQ127942213 ScholiaQ127942213MaRDI QIDQ6493282
Yang Zhang, Zhaojun Pang, Qi-Xin Zhu, Qing-Tao Wang
Publication date: 26 April 2024
Published in: International Journal of Structural Stability and Dynamics (Search for Journal in Brave)
nonlocal elasticity theoryabsolute nodal coordinate formulation (ANCF)impact dynamicssingle-layered graphene sheets (SLGSs)
Cites Work
- A new model for dry and lubricated cylindrical joints with clearance in spatial flexible multibody systems
- Generalization of plate finite elements for absolute nodal coordinate formulation
- A non-incremental finite element procedure for the analysis of large deformation of plates and shells in mechanical system applications
- Explicit higher-order accurate isogeometric collocation methods for structural dynamics
- Dispersion-minimized mass for isogeometric analysis
- Nanoparticle mass detection by single and multilayer graphene sheets: theory and simulations
- Modeling of nonlinear vibration of graphene sheets using a meshfree method based on nonlocal elasticity theory
- Integration of localized surface geometry in fully parameterized ANCF finite elements
- VIBRATION ANALYSIS OF A GRAPHENE NANORIBBON UNDER HARMONIC LORENTZ FORCE USING A HYBRID MODAL-MOLECULAR DYNAMICS METHOD
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