全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Characterization of Microstructure Coatings Used in Industry

DOI: 10.4236/jsemat.2019.92002, PP. 11-27

Keywords: Coatings, Thermal Spraying, PVD

Full-Text   Cite this paper   Add to My Lib

Abstract:

The paper describes the research of coatings on the AK9 aluminum alloy substrate and hybrid coatings deposited on graphite substrate. Coatings on the AK9 alloy were deposited by thermal spraying and PVD method (physical vapour deposition). Hybrid coatings consisting of a tungsten interlayer and an external layer of Zr + DLC (diamond-like carbon) and CVD were deposited on the graphite surface. Plasma methods—PVD and CVD—were used. The structure and composition of coatings were analyzed.

References

[1]  Runge, J.M. and Pomis, A.J. (2006) Understanding Aluminium Anodic Oxide Film Formation: Improving Engineering Properties through Microstructural Modification. XII Ebrats Brasilian Surface Treatment Meeting and II Latin—American Interfinish, Sao Paulo, 10 May 2006.
https://pdfs.semanticscholar.org/a97a/d14982c66edddada9f30b271264b6b4d24e5.pdf
[2]  Bhatnagar, N. (2014) Thermal Sprayed Alumina Nanocoatings for Corrosion Prevention. International Journal of Chemical, Environmental & Biological Sciences, 2, 61-64.
[3]  Richert, M.W., Mikulowski, B., Palka, P., Hotlos, A. and Perek-Nowak, M. (2013) The Effect of Chemical Composition and Thermal Sprayed Method on the Chromium and Tungsten Carbides Coatings Microstructure. Journal of Surface Engineered Materials and Advanced Technology, 3, 1-5.
https://doi.org/10.4236/jsemat.2013.31001
[4]  Moarrefzadeh, A. (2012) Faculty Member of Mechanical Engineering Simulation and Modeling of Physical Vapor Deposition (PVD) Process. Transactions on Applied and Theoretical Mechanics, 7, 106.
[5]  Fukui, H. (2016) Evolutional History of Coating Technologies for Cemented Carbide Inserts—Chemical Vapor Deposition and Physical Vapor Deposition. SEI Technical Review, 82, 39-45.
[6]  Komarova, F.F., Konstantinova, S.V., Pogrebnjakb, A.D., Pilkoa, V.V., Kozakc, C. and Opielakd, M. (2014) Formation and Characterization of Nanostructured Composite Coatings Based on the TiN Phase. Acta Physica Polonica A, 125, 1292-1295.
[7]  Paksunchai, C., Denchitcharoen, S., Chaiyakun, S. and Limsuwan, P. (2012) Growth and Characterization of Nanostructured TiCrN Films Prepared by DC Magnetron Cosputtering. Procedia Engineering, 32, 875-881.
https://doi.org/10.1016/j.proeng.2012.02.026
[8]  Tucker, R.C. (1994) ASM Handbook, Volume 5A: Thermal Spray Technology. ASM International, 497.
[9]  Smolik, J. (2012) Hybrid Surface Treatment Technology for Increase of Hot Forging Dies. Archives of Metallurgy and Materials, 57, 657-664.
https://doi.org/10.2478/v10172-012-0070-z
[10]  Giridhar, P. and Subbiah, R. (2016) Effect of AlTiN PVD Coating Thickness on 316L Austenitic Stainless Steel Wear Resistance. International Journal of Aerospace and Mechanical Engineering, 3, 19.
[11]  Szczucka-Lasota, B. and Wolniak, R. (2017) The High Quality of Hybrid Sprayed Coatings for Power Plant Application. Zeszyty Naukowe Politechniki Slaskiej, 469-480.
[12]  Song, C., Liu, M., Deng, Z., Peng, S., Chun, N., Deng, M. and Liao, H.L. (2018) A Novel Method for In-Situ Synthesized TiN Coatings by Plasma Spray-Physical Vapor Deposition. Materials Letters, 217, 127-130.
https://doi.org/10.1016/j.matlet.2018.01.068
[13]  Su, Y.J., Trice, R.W., Faber, K.T., Wang, S.H. and Porter, W.D. (2004) Thermal Conductivity, Phase Stability, and Oxidation Resistance of Y3Al5O12 (YAG)/Y2O3-ZrO2 (YSZ) Thermal-Barrier Coatings. Oxidation of Metals, 61, 253-271.
https://doi.org/10.1023/B:OXID.0000025334.02788.d3
[14]  Montemor, M.F. (2014) Functional and Smart Coatings for Corrosion Protection: A Review of Recent Advances. Surface and Coatings Technology, 258, 17-37.
[15]  Kennedy, D., Xue, Y. and Mihaylov, M. (2005) Current and Future Applications of Surface Engineering. The Engineers Journal (Technical), 59, 287-292.
[16]  Rivero, P.J., Urrutia, A., Goicoechea, J., Zamarreno, C.R., Arregui, F.J. and Matías, I.R. (2011) An Antibacterial Coating Based on a Polymer/Sol-Gel Hybrid Matrix Loaded with Silver Nanoparticles. Nanoscale Research Letters, 6, 305.
https://doi.org/10.1186/1556-276X-6-305
[17]  Padture, N.P., Gell, M. and Jordan, E.H. (2002) Thermal Barrier Coatings for Gas-Turbine Engine Applications. Science, 296, 280-284.
https://doi.org/10.1126/science.1068609
[18]  Wellman, R.G. and Nicholls, J.R. (2007) A Review of the Erosion of Thermal Barrier Coatings. Journal of Physics D: Applied Physics, 40, R293.
https://doi.org/10.1088/0022-3727/40/16/R01
[19]  Paint and Coatings Market Research Reports.
https://www.marketreseArchhub.com/paints-and-coatings-market-reports.html?page=10
[20]  Smolik, J. (2016) Hybrydowe Technologie Inzynierii Powierzchni. Biblioteka Problemów Eksploatacji, Wyd. Naukowe Instytutu Technologii Eksploatacji PIB, Radom.
[21]  Richert, M., Zawadzka, P., Mazurkiewicz, A., Smolik, J., Leszczyńska-Madej, B., Nejman, I., Palka, P. and Pietrzyk, S. (2016) Deposition of W/a-C:H:Zr and W/a-C:H:W Multilayer Coatings on Substrate Made of Porous Graphite by Arc-Electron Beam Hybrid Method. Surface and Coatings Technology, 300, 19-24.
[22]  Liu, H. and Dandy, D.S. (1995) Studies on Nucleation Process in Diamond CVD: An Overview of Recent Developments. Diamond and Related Materials, 4, 1173-1188.
https://doi.org/10.1016/0925-9635(96)00297-2
[23]  Richert, M. and Zawadzka, P. (2014) Utility Coatings on Tools and Machine Parts for the Non-Ferrous Metals Industry. Obróbka Plastyczna Metali, 25, 5-26.
[24]  Richert, M., Ksiazek, M., Leszczyńska-Madej, B., Nejman, I., Grzelka, R. and Palka, P. (2010) The Investigations of Coatings Deposited by Thermal Spraying Methods. Journal of Achievements in Materials and Manufacturing Engineering, 38, 95.
[25]  Wei, Ch., Wang, Y.S. and Tai, F.C. (2009) The Role of Metal Interlayer on Thermal Stress, Film Structure, Wettability and Hydrogen Content for Diamond like Carbon Films on Different Substrate. Diamond and Related Materials, 18, 407-412.
https://doi.org/10.1016/j.diamond.2008.11.009
[26]  Ramesham, R. (1999) Voltammetric Studies at the Polycrystalline Diamond Grown over a Graphite Electrode Material. Thin Solid Films, 339, 82-87.
https://doi.org/10.1016/S0040-6090(98)01090-6

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133