Advances in Mechanical Problems of Functionally Graded Materials and Structures / Le Van Lich, Indra Vir Singh, Tiantang Yu, Tinh Quoc Bui
| Advances in Mechanical Problems of Functionally Graded Materials and Structures / Le Van Lich, Indra Vir Singh, Tiantang Yu, Tinh Quoc Bui |
| Autore | Lich Le Van |
| Pubbl/distr/stampa | MDPI - Multidisciplinary Digital Publishing Institute, 2019 |
| Descrizione fisica | 1 electronic resource (262 p.) |
| Soggetto non controllato |
power-law distribution
evanescent wave flow theory of plasticity free vibration characteristics neural networks geometrically nonlinear analysis finite element method stress concentration factor inhomogeneous composite materials circular plate porous materials minimum module approximation method ANFIS electroelastic solution functionally graded piezoelectric materials Love wave polynomial approach stepped FG paraboloidal shell material design damping coefficient spring stiffness technique Lamb wave pure bending general edge conditions residual stress graded finite elements large strain non-linear buckling analysis orthogonal stiffener combined mechanical loads functionally graded piezoelectric-piezomagnetic material functionally graded beams attenuation failure and damage analytical solution functionally graded materials elastoplastic analysis elastic foundation hollow disc different moduli in tension and compression external pressure functional graded saturated material bimodulus fuzzy logic truncated conical sandwich shell quadratic solid–shell elements functionally graded viscoelastic material finite element analysis residual strain neutral layer elliptical hole thin structures functionally graded plate inhomogeneity clustering metal foam core layer robotics and contact wear dispersion high order shear deformation theory finite elements |
| ISBN |
9783039216598
3039216597 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910367749803321 |
Lich Le Van
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| MDPI - Multidisciplinary Digital Publishing Institute, 2019 | ||
| Lo trovi qui: Univ. Federico II | ||
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Recent Advances in Theoretical and Computational Modeling of Composite Materials and Structures
| Recent Advances in Theoretical and Computational Modeling of Composite Materials and Structures |
| Autore | Tornabene Francesco |
| Pubbl/distr/stampa | Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 |
| Descrizione fisica | 1 online resource (292 p.) |
| Soggetto topico |
History of engineering & technology
Technology: general issues |
| Soggetto non controllato |
3D elasticity
3D shell model arc bi-directional functionally graded bimodular model bolotin scheme buckling cantilever Carbon-fiber-reinforced plastics (CFRPs) coarse-fine composite curved sandwich nanobeams dynamic stability dynamics modeling elastic foundation electro-optical pod external prestressed steel strands fastener FE-GDQ FG-GPL Fick moisture diffusion equation finite element analysis (FEA) first-principles calculation fractional Burgers model fractional calculus fractional Kelvin-Voigt model fractional Maxwell model fractional Poynting-Thomson model fractional Zener model functional reinforcement functionally graded materials functionally-graded materials gapless half metals GDQ graphene nanoplatelets heat transfer equation Heusler compounds higher-order shear deformable laminated beams higher-order shear deformation theory Joule heat layer-wise approach moisture content profile n/a nanocomposites nonlinear free vibration nonlocal strain gradient theory piezoelectric effect pipe flow porosity prestressed concrete cylinder pipe quasi-3D higher-order shear theory Riemann-Liouville fractional derivative sandwich beams spin gapless semiconductor steady-state hygro-elastic analysis theoretical study thermal-buckling two-axis four-gimbal vibration viscoelasticity wire-breakage |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910580203503321 |
Tornabene Francesco
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| Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 | ||
| Lo trovi qui: Univ. Federico II | ||
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