Functional Ceramic Coatings

Ceramic materials in the form of coatings can significantly improve the functionality and applications of other engineering materials. Due to a wide range of controllable features and various deposition methods, it is possible to create tailored substrate-coating systems that meet the requirements o...

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Bibliographic Details
Other Authors: Pietrzyk, Bozena (Editor), Miszczak, Sebastian (Editor)
Format: Book Chapter
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
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Online Access:Get Fullteks
DOAB: description of the publication
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041 0 |a English 
042 |a dc 
072 7 |a GP  |2 bicssc 
072 7 |a TB  |2 bicssc 
100 1 |a Pietrzyk, Bozena  |4 edt 
700 1 |a Miszczak, Sebastian  |4 edt 
700 1 |a Pietrzyk, Bozena  |4 oth 
700 1 |a Miszczak, Sebastian  |4 oth 
245 1 0 |a Functional Ceramic Coatings 
260 |a Basel, Switzerland  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2021 
300 |a 1 electronic resource (210 p.) 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a Ceramic materials in the form of coatings can significantly improve the functionality and applications of other engineering materials. Due to a wide range of controllable features and various deposition methods, it is possible to create tailored substrate-coating systems that meet the requirements of modern technologies. Therefore, it is crucial to understand the relationships between the structures, morphology and the properties of ceramic coatings and expand the base of scientific knowledge about them. This book contains a series of fourteen articles which present research on the production and properties of ceramic coatings designed to improve functionality for advanced applications. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by/4.0/ 
546 |a English 
650 7 |a Research & information: general  |2 bicssc 
650 7 |a Technology: general issues  |2 bicssc 
653 |a photocatalytic coatings 
653 |a solidification 
653 |a plasma spraying 
653 |a TiO2 
653 |a microstructure 
653 |a LDPE 
653 |a RF CVD 
653 |a doped DLC structure 
653 |a wettability 
653 |a biocompatibility 
653 |a ceramic coating 
653 |a anti-oxidation 
653 |a SiO2@Al additive 
653 |a carbon steel 
653 |a calcium hydroxyapatite 
653 |a sol-gel synthesis 
653 |a thin films 
653 |a spin coating 
653 |a surface roughness 
653 |a simulated body fluid 
653 |a SiO2 coatings 
653 |a sol-gel 
653 |a Zn doping 
653 |a antibacterial coatings 
653 |a hydrophobic coatings 
653 |a Ni-Cr alloy 
653 |a Ti(C, N) coatings 
653 |a ion release 
653 |a atmospheric plasma spraying 
653 |a Al2O3 
653 |a Cr2O3 
653 |a sliding wear 
653 |a phase transformation 
653 |a reactivity 
653 |a sol-gel coating 
653 |a corrosion resistance 
653 |a cells viability 
653 |a hydrophilic coating 
653 |a nitriding 
653 |a low friction 
653 |a piston ring 
653 |a micron-/nano-grain coatings 
653 |a nanoindentation size effect 
653 |a trans-scale mechanics theory 
653 |a SiC coatings 
653 |a oxide fibers 
653 |a chemical vapor deposition 
653 |a deposition mechanism 
653 |a thickness control 
653 |a silicon carbon-nitride 
653 |a silicone carbon-oxide 
653 |a PECVD method 
653 |a inhomogeneous optical filters 
653 |a gradient interference filters 
653 |a organosilicon precursors 
653 |a alumina coating 
653 |a sol-gel 
653 |a composite coating 
653 |a graphene oxide 
653 |a graphene nanoplatelets (GNP) 
653 |a rGO 
653 |a adiabatic shear instability (ASI) 
653 |a cold spray 
653 |a titanium dioxide 
653 |a bonding mechanism 
653 |a adhesion strength 
653 |a substrate deformation 
653 |a amorphous interface layer 
653 |a n/a 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/3762  |7 0  |z Get Fullteks 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/76341  |7 0  |z DOAB: description of the publication