Nanomechanics of Structures and Materials
Nanomechanics of Structures and Materials
Modeling and Analysis
Zur, Krzysztof Kamil; Faghidian, S Ali
Elsevier - Health Sciences Division
08/2024
410
Mole
9780443219498
Pré-lançamento - envio 15 a 20 dias após a sua edição
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1.Mixture unified gradient elasticity versus two-phase local/nonlocal gradient theory
2.Some fundamental electrical properties of highly aligned graphene nanocomposites and lightweight foams
3.Higher-order theories for the free vibration analysis of doubly curved shells made of nanostructured materials
4.Love-type surface waves in nonlocal elastic layer over a flexoelectric solid half-space
5.The inhomogeneous half-plane with surface elasticity effects under dynamic loads
6.Nonlocal discrete and continuous modeling of free vibration of forests of vertically aligned single-/double-walled carbon nanotubes
7.A stabilized nonordinary peridynamic model for electromechanical coupling problems
8.Microstructural effects in periodic nanostructures
9.Displacement-driven approach to nonlocal elasticity
10.Gradient nanomechanics in civil engineering
11.Fractional nonlocal elastic rod, beam, and plate models applied to lattice structural mechanics
2.Some fundamental electrical properties of highly aligned graphene nanocomposites and lightweight foams
3.Higher-order theories for the free vibration analysis of doubly curved shells made of nanostructured materials
4.Love-type surface waves in nonlocal elastic layer over a flexoelectric solid half-space
5.The inhomogeneous half-plane with surface elasticity effects under dynamic loads
6.Nonlocal discrete and continuous modeling of free vibration of forests of vertically aligned single-/double-walled carbon nanotubes
7.A stabilized nonordinary peridynamic model for electromechanical coupling problems
8.Microstructural effects in periodic nanostructures
9.Displacement-driven approach to nonlocal elasticity
10.Gradient nanomechanics in civil engineering
11.Fractional nonlocal elastic rod, beam, and plate models applied to lattice structural mechanics
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nano-structures; nano-composites; graphene; peridynamics; fracture; Graphene sheets; Carbon Nanotube; size effects; nonlocal elasticity; gradient theories; nano-engineering; NEMS
1.Mixture unified gradient elasticity versus two-phase local/nonlocal gradient theory
2.Some fundamental electrical properties of highly aligned graphene nanocomposites and lightweight foams
3.Higher-order theories for the free vibration analysis of doubly curved shells made of nanostructured materials
4.Love-type surface waves in nonlocal elastic layer over a flexoelectric solid half-space
5.The inhomogeneous half-plane with surface elasticity effects under dynamic loads
6.Nonlocal discrete and continuous modeling of free vibration of forests of vertically aligned single-/double-walled carbon nanotubes
7.A stabilized nonordinary peridynamic model for electromechanical coupling problems
8.Microstructural effects in periodic nanostructures
9.Displacement-driven approach to nonlocal elasticity
10.Gradient nanomechanics in civil engineering
11.Fractional nonlocal elastic rod, beam, and plate models applied to lattice structural mechanics
2.Some fundamental electrical properties of highly aligned graphene nanocomposites and lightweight foams
3.Higher-order theories for the free vibration analysis of doubly curved shells made of nanostructured materials
4.Love-type surface waves in nonlocal elastic layer over a flexoelectric solid half-space
5.The inhomogeneous half-plane with surface elasticity effects under dynamic loads
6.Nonlocal discrete and continuous modeling of free vibration of forests of vertically aligned single-/double-walled carbon nanotubes
7.A stabilized nonordinary peridynamic model for electromechanical coupling problems
8.Microstructural effects in periodic nanostructures
9.Displacement-driven approach to nonlocal elasticity
10.Gradient nanomechanics in civil engineering
11.Fractional nonlocal elastic rod, beam, and plate models applied to lattice structural mechanics
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.