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Characterization and Modelling of Composites

Characterization and Modelling of Composites

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Composites have increasingly been used in various structural components in the aerospace, marine, automotive, and wind energy sectors. The material characterization of composites is a vital part of the product development and production process. Physical, mechanical, and chemical characterization helps developers to further their understanding of products and materials, thus ensuring quality control. Achieving an in-depth understanding and consequent improvement of the general performance of these materials, however, still requires complex material modeling and simulation tools, which are often multiscale and encompass multiphysics. This Special Issue aims to solicit papers concerning promising, recent developments in composite modeling, simulation, and characterization, in both design and manufacturing areas, including experimental as well as industrial-scale case studies. All submitted manuscripts will undergo a rigorous review process and will only be considered for publication if they meet journal standards. Selected top articles may have their processing charges waived at the recommendation of reviewers and the Guest Editor.

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Keywords

  • Abaqus
  • analytical model
  • Bamboo
  • bottom-ash
  • Characterization
  • composite
  • Composite materials
  • composite plastics
  • critical energy release rate
  • curvature mode shape
  • damage detection
  • damping
  • delamination
  • equivalent solid properties
  • fiber matrix interface
  • fiber orientation
  • finite element analysis
  • finite element simulations
  • flax-epoxy composite
  • fly-ash
  • fracture toughness
  • freeze-thaw
  • fused filament fabrication
  • geopolymer concrete
  • hexagonal tablets
  • InsideBCC
  • interlaminar fracture energy
  • laminated composite plates
  • lattice cell structures
  • leachability
  • liquid moulding
  • Machine learning
  • measurements
  • mechanical strength
  • modal analysis
  • Mode I
  • Mode II and Mixed-mode I–II interlaminar fracture
  • mould filling simulations
  • n/a
  • nacre
  • non-destructive test
  • ODF
  • PLA
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • RFT
  • stiffness
  • strain energy
  • Structural dynamics
  • structural monitoring
  • TCLP
  • Testing
  • thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
  • three-dimensional printing
  • viscoelasticity

Links

DOI: 10.3390/books978-3-0365-0715-6

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