Integrated Review of Thermo-Physical Properties of Different Ceramic Coatings to Make them Suitable for Internal Combustion Engines

K. R. Sharma
K. R. Sharma
Maulana Azad National Institute of Technology Maulana Azad National Institute of Technology

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Integrated Review of Thermo-Physical Properties of Different Ceramic Coatings to Make them Suitable for Internal Combustion Engines

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Abstract

Thermal barrier coating using many ceramic powders is being done in internal combustion engines for more than two decades now. Thermal spray techniques are extensively used for coating of these powders over piston top, cylinder walls and valves of the engine. These coatings have to bear thermal stresses during combustion in the engine thus wear and tear of ceramic coating occurs. The present paper is a review of the research work that has been done to study different ceramic coatings to understand stresses in coatings, porosity and crack penetration by applying thermal shock tests and thermal torch experiment. Also the best ceramic coating material has been suggested suitable as thermal barrier coating for application in internal combustion engines.

References

29 Cites in Article
  1. A Ambroz,J Kaspar (1982). Unknown Title.
  2. A Mattıng,B Delventhal (1966). Diskussion.
  3. M Demırcı (1994). Unknown Title.
  4. M Vural,S Zeytin,A Ucisik (1997). Plasma-sprayed oxide ceramics on steel substrates.
  5. C Berndt (1985). Plasma Spray coating.
  6. F Eıchhorn,J Metzler (1968). Unknown Title.
  7. R Unger (1987). Proceedings of the National Thermal SprayConference.
  8. W Gates,A Dıaz,Saj Aquılıno (1993). Unknown Title.
  9. G Stachowiak,G Stachowiak,P Evans (2000). Wear and friction characteristics of ion-implanted zirconia ceramics.
  10. Y Sun,B Li,D Yang,T Wang,Y Sasaki,K Shii (1998). Unlubrication friction and wear behaviour of zirconia ceramics.
  11. Rhj Hannink,M Murray,H Scott (1984). Friction and wear of partially stabilized zirconia: Basic science and practical applications.
  12. Yingjie He,Louis Winnubst,Anthonie Burggraaf,Henk Verweij,Paul Van Der Varst,Bert De With (1996). Grain‐Size Dependence of Sliding Wear in Tetragonal Zirconia Polycrystals.
  13. K Zumgahr,W Bundschuh,B Zimmerlin (1993). Effect of grain size on friction and sliding wear of oxide ceramics.
  14. Dong Wang,Zhi Mao (1995). Microscopic observations of the abrasive wear of zirconia ceramics.
  15. C Yang,W Wei (2000). Effects of material properties and testing parameters on wear properties of fine-grain zirconia (TZP).
  16. S Moulzolf,R Lad,P Blau (1999). Microstructural effects on the friction and wear of zirconia films in unlubricated sliding contact.
  17. Yingjie He,Louis Winnubst,Anthonie Burggraaf,Henk Verweij,Paul Van Der Varst,Bert De With (1997). Influence of Porosity on Friction and Wear of Tetragonal Zirconia Polycrystal.
  18. (1990). application and wear.
  19. Ying-Chun Zhu,Ken Yukimura,Chuan-Xian Ding,Ping-Yu Zhang (2001). Tribological properties of nanostructured and conventional WC–Co coatings deposited by plasma spraying.
  20. Travgott Fischer,Michael Anderson,Said Jahanmir (1989). Influence of Fracture Toughness on the Wear Resistance of Yttria‐Doped Zirconium Oxide.
  21. Gsam Theunissen,J Bouma,Aja Winnubst,A Burggraaf (1992). Mechanical properties of ultra-fine grained zirconia ceramics.
  22. Y He,A Winnubst,C Sagel-Ransijn,A Burggraaf,H Verweij (1996). Enhanced mechanical properties by grain boundary strengthening in ultra-fine grained TZP ceramics.
  23. D Stewart,P Shipway,D Mccartney (1999). Abrasive wearbehaviour of conventional and nanocomposite HVOF-sprayed WC-Co coatings.
  24. Halit Dogan,Fehim Findik,Omer Morgul (2002). Friction and wear behaviour of implanted AISI 316L SS and comparison with a substrate.
  25. Halit Dogan,Fehim Findik,Ahmet Oztarhan (2003). Comparative study of wear mechanism of surface treated AISI 316L stainless steel.
  26. Serdar Salman,Ramazan Köse,Levent Urtekin,Fehim Findik (2006). An investigation of different ceramic coating thermal properties.
  27. S Salman,Cizmeciog ˘lu Z (1998). Stud ies of the correlation between wear behaviour and bonding strength in two types of ceramic coating.
  28. Salman (1995). Unknown Title.
  29. Kadir Gok,Mehmet Erdem,Mehmet Alkan,Arif Gok (2001). The effects onto springback of waiting time in sheet metal forming.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

K. R. Sharma. 2014. \u201cIntegrated Review of Thermo-Physical Properties of Different Ceramic Coatings to Make them Suitable for Internal Combustion Engines\u201d. Global Journal of Research in Engineering - A : Mechanical & Mechanics GJRE-A Volume 13 (GJRE Volume 13 Issue A10).

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Version of record

v1.2

Issue date
January 13, 2014

Language
en
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Integrated Review of Thermo-Physical Properties of Different Ceramic Coatings to Make them Suitable for Internal Combustion Engines

K. R. Sharma
K. R. Sharma <p>Maulana Azad National Institute of Technology</p>

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