Advances in Ceramic Matrix Composites

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Advances in Ceramic Matrix Composites, Second Edition, delivers an innovative approach to ceramic matrix composites, focusing on the latest advances and materials developments. As advanced ceramics and composite materials are increasingly utilized as components in batteries, fuel cells, sensors, high-temperature electronics, membranes and high-end biomedical devices, and in seals, valves, implants, and high-temperature and wear components, this book explores the substantial progress in new applications. Users will gain knowledge of the latest advances in CMCs, with an update on the role of ceramics in the fabrication of Solid Oxide Fuel Cells for energy generation, and on natural fiber-reinforced eco-friendly geopolymer and cement composites. The specialized information contained in this book will be highly valuable to researchers and graduate students in ceramic science, engineering and ceramic composites technology, and engineers and scientists in the aerospace, energy, building and construction, biomedical and automotive industries.

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Detaljer
  • SprogEngelsk
  • Sidetal842
  • Udgivelsesdato20-01-2018
  • ISBN139780081021668
  • Forlag Woodhead Publishing Ltd
  • FormatPaperback
Størrelse og vægt
  • Vægt1340 g
  • coffee cup img
    10 cm
    book img
    15,1 cm
    22,9 cm

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    Cement Nanotechnology Coatings Microfabrication. Microstructure Nuclear energy Oxidation Recession Stability Dental ceramics Friction Protection Clay Perovskite Defects Adhesion Kinetics Longevity Mechanical properties Solid oxide fuel cells Silicon carbide Radiation effects Ceramic-matrix composites Infiltration Carbon nanotubes ceramic Particulate Composites Ceramic matrix composite FGM MAX phases Fibres Densification Infiltration technique Mechanical behavior Composites Toughness Fiber reinforcement Composite Flowing Natural Fibers Applications XRD Thermal stability Interphase Fusion Energy Heterogeneity Strain Hardening Ceramic Composites Spark Plasma Sintering Material properties Nano-indentation Wear Self-healing Lifetime Advanced Ceramics Hot isostatic pressing Mechanical Degradation Strengthening Geopolymers Geopolymer Material-Design Solid lubricants SiC-Matrix 3-R phase Activation energies for thermal dissociation Aluminaaluminumm titanate (A/AT)Alumina/calcium hexaluminate (A/CA6)GISRD Al2O3�Cr2O3/Cr3C2 nanocomposite Alumina�silicon carbide Applied Stress Al2O3-SiC nanocomposites C/C composite chemical degradation Calcination temperature Cold ceramics Biological degradation Clinical failure Cotton Fibers Cutting tool materials Dental nanocomposites Cubic boron nitride Dental CAD/CAM Durability properties Eco-composite Glassy Phase cutting performance Cutting Tool Flax Fibers Hot Pressing Hexagonal crystal Graded ceramic matrix composites Graded ceramic tools Hybrid processing route Double-A layered Ionic electrolyte Electrophoretic deposition Low-temperature co-fired ceramic (LTCC)Shrinkage Fiber-reinforced ceramic matrix composites (CMC)Interface Fibre reinforcement Finite element analysis (FEA)Finite element method (FEM)Fracture Geopolymer composites Oxygen Partial Pressure Portland cement matrix Preceramic polymers physical properties Kinetics of thermal dissociation Sintering process SRD and HNTD Shrinkage mismatch Small specimen test technology TiB2Toughening mechanisms UHFRC composites Thermal Stress Titanium aluminum nitride Tungsten carbide-composites Micro-nanocomposite ceramic tools Strengthening and toughening mechanisms Organosilicon precursors Microwave-absorbing materials Magnetic field alignment Nanoceramic composites Ni�YSZ anode Metallic interconnect Resin-based composite restorative materials (dental composites)Restorative dentistry Microceramic Nanoceramic coatings SiC/SiC composite Soft lithography Titanium silicon carbide Volatilization Self-crack-healing sicf WC/Al2O3composites Thermal stability in vacuum

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