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Recent Advances in Metal, Ceramic, and Metal-Ceramic Composite Films/Coatings

Recent Advances in Metal, Ceramic, and Metal-Ceramic Composite Films/Coatings

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This reprint gathers works on various coating materials and technologies aimed at the improvement of materials’ properties, such as corrosion resistance or biocompatibility. Systematic studies demonstrate how the structure and morphology of coatings can change the mechanical, chemical and various functional properties of materials. The reprint contributes to the better understanding of various phenomena induced by metal, ceramic or composite coatings in core materials and, thus, it can help in the more rational design of the selected material’s properties in future studies by the application of coatings.

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Keywords

  • 0.1 and 0.6 molar solution
  • abrasive wear resistance
  • Al2O3
  • aluminide coatings
  • anodizing
  • atomic layer deposition (ALD)
  • Biocompatibility
  • Ce3+/Eu2+
  • ceramic coatings
  • cermet
  • chemical vapor deposition
  • citric acid
  • cold spray
  • cold work die steel
  • composite coatings
  • corrosion mechanism
  • corrosion product
  • Corrosion Protection
  • Creep
  • detection limit
  • electrochemical workstation
  • energy transfer
  • friction and wear
  • growth mechanism
  • hardness measurements
  • high temperature fatigue
  • high-strength low-alloy steel
  • HVOF
  • Infrared spectroscopy
  • iron anchor
  • iron relics
  • malonic acid
  • Mathematics & science
  • metal–mineral abrasion
  • Microstructure
  • molecular layer deposition (MLD)
  • n/a
  • neutral salt spray test
  • nickel alloys
  • oxalic acid
  • phosphoric acid
  • photocatalysis
  • Photoluminescence
  • Physics
  • plasma electrolytic oxidation
  • plasma electrolytic oxidation (PEO) coating
  • porous anodic alumina
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • scanning electron microscope
  • sliding wear
  • sulfosalicylic acid
  • sulfuric acid
  • tartaric acid
  • ultrathin films
  • underwater welding
  • WC-CoCr
  • wear resistance
  • wet welding
  • zirconium and zirconium-based alloys
  • ZnS

Links

DOI: 10.3390/books978-3-0365-4598-1

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