Advanced Mechanics of Composite Materials and Structural Elements

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Advanced Mechanics of Composite Materials and Structural Elements analyzes contemporary theoretical models at the micro- and macro levels of material structure. Its coverage of practical methods and approaches, experimental results, and optimization of composite material properties and structural component performance can be put to practical use by researchers and engineers. The third edition of the book consists of twelve chapters progressively covering all structural levels of composite materials from their constituents through elementary plies and layers to laminates and laminated composite structural elements. All-new coverage of beams, plates and shells adds significant currency to researchers. Composite materials have been the basis of many significant breakthroughs in industrial applications, particularly in aerospace structures, over the past forty years. Their high strength-to-weight and stiffness-to-weight ratios are the main material characteristics that attract the attention of the structural and design engineers. Advanced Mechanics of Composite Materials and Structural Elements helps ensure that researchers and engineers can continue to innovate in this vital field.

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Detaljer
  • SprogEngelsk
  • Sidetal832
  • Udgivelsesdato04-07-2013
  • ISBN139780080982311
  • Forlag Elsevier / The Lancet
  • FormatHardback
Størrelse og vægt
  • Vægt1850 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Viscoelasticity Carbon fibers Micromechanics Creep OPTIMIZATION Tensión STRESSES Shear Structural Materials Plate theory Beam Theory Fracture Toughness Hybrid composites Damage Evolution Classical Shell Theory Hooke's Law Buckling Prepregs Temperature effects Cyclic Loading Constitutive equations Axisymmetric deformation Laminate Compression Advanced Composites Sandwich Structure TOWS PLY admissible static and kinematic fields Allowable stresses angle-ply orthotropic layer anisogrid composite lattice structures Anisotropic Laminated Plates Anisotropic Shells circumferential winding Antisymmetric Laminates Compatibility equations composite pressure vessels Bulk Materials damage initiation composite beam theory Failure Criteria engineering shell theory free vibrations of composite beams fiber-matrix interaction Fiber metal laminates fabric layers hygrothermal effects displacements and strains Isotropic layer Equilibrium equations Macrostructure multi-cell cross-sectional contours orthogonally reinforced orthotropic layer Principal Stresses semi-membrane shell theory quasi-homogeneous layers lamina lattice layers Stress Transformation Stiffness coefficients spatially reinforced layers shear deformable shell theory transversely isotropic plates shrinkage effects unidirectional orthotropic layer membrane shell theory Optimal fibrous structures orthotropic symmetric plates nonlinear bending matrix materials Orthotropic Plates unidirectional anisotropic layer Symmetric Laminates Thin-walled composite beams Progressive failure spinning composite disks transformation of small strains

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