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Ceramic Films and Coatings: Properties and Applications

Ceramic Films and Coatings: Properties and Applications

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Various technologies have been developed for ceramic films and coatings, since they play an important role in the field of materials science. Compared to bulk ceramics, the preparation of ceramic film is certainly not a tedious process, as it includes ball milling, sieving, forming, pre-sintering, and high-temperature sintering. Additionally, it is possible to manufacture ceramic film with various shapes to meet industrial and civil demands. Recently, functional ceramic films and coatings used for lighting, anti-counterfeiting, corrosion prevention, wear resistance, and so on, have become a hot research topic. However, the creation of high-performance films and coatings still remains a challenge because the preparation technique, as well as their composition, microstructure, and compactness, significantly affect their properties and final applications. This Special Issue contains 25 papers, mainly introducing surface coatings, ceramics, photoluminescence, corrosion prevention, and wear resistance. This issue contains outstanding achievements in this field, which will definitely promote the future development of ceramic films and coatings technology.

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Keywords

  • abrasive wear
  • acoustic cavitation
  • afterglow
  • Al2O3
  • anion exchange
  • anti-defects
  • AZ91D magnesium alloy
  • bandgap
  • carbon steel
  • cemented carbide
  • ceramic cutting tool
  • ceramic film
  • chemical vapor deposition
  • Coatings
  • CoFe2O4/SWCNTs composites
  • cold spray
  • colloidal processing
  • composite coating
  • core–shell
  • Corrosion Protection
  • corrosion resistance
  • Cr3+
  • CrSiN coating
  • cutting performance
  • deposition
  • double loss mechanism
  • E-51 epoxy resin
  • electrical conductivity
  • electrochemical corrosion
  • eroding
  • eta phase
  • Eu3+
  • fe
  • fracture toughness
  • friction coefficient
  • gadolinium aluminate
  • gas permeability
  • Gd2O3-MgO
  • glass-ceramics
  • Grain growth
  • graphene oxide
  • hardness
  • high-entropy alloys
  • high-velocity oxygen-fuel
  • homogenous phase domain distribution
  • hot-pressing sintering
  • impedance matching
  • IN718 nickel-based superalloy
  • laser cladding
  • layered rare-earth hydroxide
  • layered yttrium hydroxide film
  • Lead
  • luminescent coating
  • magnesium alloy
  • Mechanical Property
  • microarc oxidation
  • microcrystals
  • microencapsulation
  • microhardness
  • Microstructure
  • microwave absorption
  • MnO-Co@C nanospheres
  • Mo
  • n/a
  • nanocomposite
  • nanopowders
  • nanostructured coating
  • necklace-like structure
  • nitrogen flux ratio
  • persistent luminescence
  • phosphate conversion coating
  • Photoluminescence
  • polyaniline
  • porosity
  • Properties
  • protective coating
  • rare earth compounds
  • residual stress
  • sacrificial precursor
  • Self-healing
  • self-toughening
  • Si3N4
  • Si3N4/TaC particles
  • silicon carbide
  • smart highway
  • solid lubricant coating
  • SrA12O4:Eu2+,Dy3+
  • stepwise heating
  • strong oxidant
  • Structure
  • TC4 alloy
  • thema EDItEUR::P Mathematics and Science
  • thema EDItEUR::P Mathematics and Science::PH Physics
  • thema EDItEUR::P Mathematics and Science::PH Physics::PHF Materials / States of matter
  • thermal oxidation
  • thermal shock stability
  • thickness
  • TiC0.7N0.3
  • TiN coatings
  • titanium nitride
  • toughness
  • transparent ceramics
  • tribological properties
  • tribological property
  • tribological testing
  • tungsten carbide
  • tungsten carbide cutting inserts
  • ultrasonic
  • urea precipitation
  • vacuum sintering
  • warm spray
  • WC-17Co coating
  • WC-Co
  • wear resistance
  • wear-resistant coatings
  • Y2O3
  • Y4O(OH)9NO3
  • Yb:YAG
  • yolk core-shell
  • YVO4 film
  • ZnGa2O4
  • ZrO2

Links

DOI: 10.3390/books978-3-7258-1028-4

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