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2009, ISBN 1420092561, ix, 266
Book
2017, ISBN 9789813146990, xix, 676 pages
Book
Composites. Part B, Engineering, ISSN 1359-8368, 04/2012, Volume 43, Issue 3, pp. 1030 - 1038
C. Analytical modelling | Nanocomposite | B. Thermal properties | B. Buckling | Engineering | Materials Science | Technology | Engineering, Multidisciplinary | Materials Science, Composites | Science & Technology | Composites | Exact sciences and technology | Applied sciences | Technology of polymers | Physicochemistry of polymers | Laminates | Polymer industry, paints, wood | Forms of application and semi-finished materials | Thermal properties | Analysis | Nanotechnology | Nanotubes
Journal Article
Composite structures, ISSN 0263-8223, 2011, Volume 93, Issue 8, pp. 2096 - 2108
Nanocomposites | Cylindrical shell | Axial compression | Functionally graded materials | Postbuckling | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Solid mechanics | Composites | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Exact sciences and technology | Applied sciences | Technology of polymers | Buckling | Physics | Static elasticity (thermoelasticity...) | Polymer industry, paints, wood | Forms of application and semi-finished materials | Cylindrical shells | Shells | Nanomaterials | Functionally gradient materials | Nanostructure
Journal Article
Composite structures, ISSN 0263-8223, 2009, Volume 91, Issue 1, pp. 9 - 19
Nonlinear bending | Temperature-dependent properties | Nanocomposites | Functionally graded materials | Plate | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Solid mechanics | Composites | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Exact sciences and technology | Applied sciences | Technology of polymers | Physics | Static elasticity (thermoelasticity...) | Polymer industry, paints, wood | Forms of application and semi-finished materials | Analysis | Nanotechnology
Journal Article
Composite structures, ISSN 0263-8223, 2011, Volume 93, Issue 10, pp. 2496 - 2503
External pressure | Nanocomposites | Cylindrical shell | Functionally graded materials | Postbuckling | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Solid mechanics | Composites | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Exact sciences and technology | Applied sciences | Technology of polymers | Buckling | Physics | Polymer industry, paints, wood | Forms of application and semi-finished materials | Analysis | Nanotechnology
Journal Article
Computer methods in applied mechanics and engineering, ISSN 0045-7825, 03/2012, Volume 213-216, pp. 196 - 205
Temperature-dependent properties | Nanocomposites | Cylindrical shell | Functionally graded materials | Nonlinear vibration | Mathematics, Interdisciplinary Applications | Engineering | Physical Sciences | Technology | Engineering, Multidisciplinary | Mechanics | Mathematics | Science & Technology | Solid mechanics | Composites | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Vibration, mechanical wave, dynamic stability (aeroelasticity, vibration control...) | Exact sciences and technology | Applied sciences | Technology of polymers | Physics | Static elasticity (thermoelasticity...) | Polymer industry, paints, wood | Forms of application and semi-finished materials | Analysis | Nanotechnology | Vibration | Nanotubes
Journal Article
Composite structures, ISSN 0263-8223, 2012, Volume 94, Issue 3, pp. 1144 - 1154
Temperature-dependent properties | Functionally graded materials | Micromechanics model | Pasternak elastic foundation | Nonlinear vibration | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Analysis | Vibration | Cylindrical shells | Shear | Shells | Nonlinearity | Functionally gradient materials | Mathematical models | Elastic deformation
Journal Article
Engineering structures, ISSN 0141-0296, 11/2013, Volume 56, pp. 698 - 708
Bending | Temperature-dependent properties | Vibration | Nanocomposites | Functionally graded materials | Buckling | Engineering | Technology | Engineering, Civil | Science & Technology | Earthwork. Foundations. Retaining walls | Structural analysis. Stresses | Strength of materials (elasticity, plasticity, buckling, etc.) | Buildings. Public works | Stresses. Safety | Exact sciences and technology | Materials | Applied sciences | Geotechnics | Miscellaneous (including polymer concrete, repair and maintenance products, etc.) | Analysis | Nanotubes | Foundations | Mathematical analysis | Nonlinearity | Mathematical models | Nanostructure | Beams (structural) | Postbuckling
Journal Article
Composite structures, ISSN 0263-8223, 09/2014, Volume 116, Issue 1, pp. 477 - 488
Nanocomposites | Cylindrical shell | Functionally graded materials | Torsion | Postbuckling | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Nanotubes | Cylindrical shells | Reinforcement | Shells | Functionally gradient materials | Nanostructure | Buckling
Journal Article
Engineering structures, ISSN 0141-0296, 09/2016, Volume 122, pp. 174 - 183
Journal Article
Composite structures, ISSN 0263-8223, 05/2015, Volume 123, pp. 383 - 392
Thermal postbuckling | Elastic foundation | Temperature-dependent properties | Nanocomposites | Functionally graded materials | Cylindrical panel | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Nanotubes | Panels | Foundations | Volume fraction | Mathematical analysis | Carbon nanotubes | Molecular dynamics | Mathematical models | Nanostructure | Postbuckling
Journal Article