LEADER 01072nlm0 22003251i 450 001 990009822270403321 005 20140212153711.0 010 $a9780470979174$bonline 035 $a000982227 035 $aFED01000982227 035 $a(Aleph)000982227FED01 035 $a000982227 100 $a20140212d2011----km-y0itay0103----ba 101 0 $aeng 135 $adrnn-008mamaa 200 1 $aData mining and statistics for decision making$bRisorsa elettronica$fStéphane Tufféry 210 $aChichester, West Sussex ; Hoboken, NJ$cWiley$d2011 225 1 $aWiley series in computational statistics 230 $aDocumento elettronico 336 $aTesto 337 $aFormato pdf 676 $a006.312 700 1$aTufféry,$bStéphane$0424510 801 0$aIT$bUNINA$gREICAT$2UNIMARC 856 4 $zFull text per gli utenti Federico II$uhttp://onlinelibrary.wiley.com/book/10.1002/9780470979174 901 $aEB 912 $a990009822270403321 961 $aStatistical decision 996 $aData mining and statistics for decision making$9835535 997 $aUNINA LEADER 05143oam 2200529 450 001 9910828639103321 005 20170523091545.0 010 $a0-08-098267-0 035 $a(OCoLC)868947509 035 $a(MiFhGG)GVRL8DIV 035 $a(EXLCZ)992550000001064752 100 $a20140424d2013 uy 0 101 0 $aeng 135 $aurun|---uuuua 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aAdvanced mechanics of composite materials and structural elements /$fValery V. Vasiliev, Professor of Structural Mechanics, Institute for Problems in Mechanics, Russian Academy of Sciences, Moscow ; Evgeny V. Morozov, Professor of Mechanical Engineering, School of Engineering & IT, the University of New South Wales, Canberra, Australia 205 $a3rd ed. 210 $aOxford $cElsevier$d2013 210 1$aOxford :$cElsevier,$d2013. 215 $a1 online resource (xiii, 818 pages) $cillustrations (some color) 225 0 $aGale eBooks 300 $aDescription based upon print version of record. 311 $a0-08-098231-X 311 $a1-299-68464-5 320 $aIncludes bibliographical references and indexes. 327 $aFront Cover; Advanced Mechanics of Composite Materials and Structural Elements; Copyright; Contents; Preface to the Third Edition; Chapter 1 - Introduction; 1.1 STRUCTURAL MATERIALS; 1.2 COMPOSITE MATERIALS; 1.3 References; Chapter 2 - Fundamentals of mechanics of solids; 2.1 STRESSES; 2.2 EQUILIBRIUM EQUATIONS; 2.3 STRESS TRANSFORMATION; 2.4 PRINCIPAL STRESSES; 2.5 DISPLACEMENTS AND STRAINS; 2.6 TRANSFORMATION OF SMALL STRAINS; 2.7 COMPATIBILITY EQUATIONS; 2.8 ADMISSIBLE STATIC AND KINEMATIC FIELDS; 2.9 CONSTITUTIVE EQUATIONS FOR AN ELASTIC SOLID; 2.10 FORMULATIONS OF THE PROBLEM 327 $a2.11 VARIATIONAL PRINCIPLES2.12. Reference; Chapter 3 - Mechanics of a unidirectional ply; 3.1 PLY ARCHITECTURE; 3.2 FIBER-MATRIX INTERACTION; 3.3 MICROMECHANICS OF A PLY; 3.4 MECHANICAL PROPERTIES OF A PLY UNDER TENSION, SHEAR, AND COMPRESSION; 3.5 HYBRID COMPOSITES; 3.6 COMPOSITES WITH HIGH FIBER FRACTION; 3.7 PHENOMENOLOGICAL HOMOGENEOUS MODEL OF A PLY; 3.8 References; Chapter 4 - Mechanics of a composite layer; 4.1 ISOTROPIC LAYER; 4.2 UNIDIRECTIONAL ORTHOTROPIC LAYER; 4.3 UNIDIRECTIONAL ANISOTROPIC LAYER; 4.4 ORTHOGONALLY REINFORCED ORTHOTROPIC LAYER; 4.5 ANGLE-PLY ORTHOTROPIC LAYER 327 $a4.6 LAYER MADE BY ANGLE-PLY CIRCUMFERENTIAL WINDING4.7 FABRIC LAYERS; 4.8 LATTICE LAYER; 4.9 SPATIALLY REINFORCED LAYERS AND BULK MATERIALS; 4.10 References; Chapter 5 - Mechanics of laminates; 5.1 STIFFNESS COEFFICIENTS OF A NONHOMOGENEOUS ANISOTROPIC LAYER; 5.2 STIFFNESS COEFFICIENTS OF A HOMOGENEOUS LAYER; 5.3 STIFFNESS COEFFICIENTS OF A LAMINATE; 5.4 SYMMETRIC LAMINATES; 5.5 ENGINEERING STIFFNESS COEFFICIENTS OF ORTHOTROPIC LAMINATES; 5.6 QUASI-HOMOGENEOUS LAMINATES; 5.7 QUASI-ISOTROPIC LAMINATES IN THE PLANE STRESS STATE; 5.8 ANTISYMMETRIC LAMINATES; 5.9 SANDWICH STRUCTURES 327 $a5.10 COORDINATE OF THE REFERENCE PLANE5.11 STRESSES IN LAMINATES; 5.12 References; Chapter 6 - Failure criteria and strength of laminates; 6.1 FAILURE CRITERIA FOR AN ELEMENTARY COMPOSITE LAYER OR PLY; 6.2 PRACTICAL RECOMMENDATIONS; 6.3 EXAMPLES; 6.4 ALLOWABLE STRESSES FOR LAMINATES CONSISTING OF UNIDIRECTIONAL PLIES; 6.5 PROGRESSIVE FAILURE: MODELING AND ANALYSIS; 6.6 References; Chapter 7 - Environmental, special loading, and manufacturing effects; 7.1 TEMPERATURE EFFECTS; 7.2 HYGROTHERMAL EFFECTS AND AGING; 7.3 TIME-DEPENDENT LOADING EFFECTS; 7.4 MANUFACTURING EFFECTS; 7.5 References 327 $aChapter 8 - Laminated composite beams and columns8.1 BASIC EQUATIONS; 8.2 STIFFNESS COEFFICIENTS; 8.3 BENDING OF LAMINATED BEAMS; 8.4 NONLINEAR BENDING; 8.5 BUCKLING OF COMPOSITE COLUMNS; 8.6 FREE VIBRATIONS OF COMPOSITE BEAMS; 8.7 REFINED THEORIES OF BEAMS AND PLATES; 8.8 References; Chapter 9 - Laminated composite plates; 9.1 EQUATIONS OF THE THEORY OF ANISOTROPIC LAMINATED PLATES; 9.2 EQUATIONS FOR THE ORTHOTROPIC PLATES WITH SYMMETRIC STRUCTURE; 9.3 ANALYSIS OF THE EQUATIONS OF PLATE THEORY FOR TRANSVERSELY ISOTROPIC PLATES; 9.4 BENDING OF ORTHOTROPIC SYMMETRIC PLATES 327 $a9.5 BUCKLING OF ORTHOTROPIC SYMMETRIC PLATES 330 $aThis book analyzes contemporary theoretical models at the micro and macro levels of material structure. It covers practical methods and approaches, experimental results, and optimization of composite material properties and structural component performance, and includes new coverage of beams, plates and shells. 606 $aComposite materials$xMechanical properties 606 $aFibrous composites$xMechanical properties 615 0$aComposite materials$xMechanical properties. 615 0$aFibrous composites$xMechanical properties. 676 $a620.11892 700 $aVasiliev$b Valery V$0471559 702 $aMorozov$b Evgeny V. 801 0$bMiFhGG 801 1$bMiFhGG 906 $aBOOK 912 $a9910828639103321 996 $aAdvanced mechanics of composite materials and structural elements$94047468 997 $aUNINA