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Original Articles

Abrasive Wear Analysis of Plasma-Sprayed LaCeYSZ Nanocomposite Coatings Using Experimental Design and ANN

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Pages 919-927 | Received 21 Feb 2014, Accepted 07 May 2014, Published online: 08 Aug 2014

REFERENCES

  • Gell, M. (1994), “Applying Nanostructured Materials to Future Gas Turbine Engines,” Journal of the Minerals Metals & Materials Society, 46(10), pp 30–34.
  • Chawla, V., Sidhu, B.S., Puri, D., and Prakash, S. (2008), “Performance of Plasma Sprayed Nanostructured and Conventional Coatings,” Journal of the Australian Ceramic Society, 44(2), pp 56–62.
  • Thakur, L. and Arora, N. (2013), “Solid Particle Erosion Behaviour of WC-CoCr Nanostructured Coating,” Tribology Transactions, 56, 781–788.
  • Wu, J., Guo, H.B., Zhou, L., Wang, L., and Gong, S.K. (2010), “Microstructure and Thermal Properties of Plasma Sprayed Thermal Barrier Coatings from Nanostructured YSZ,” Journal of Thermal Spray Technology, 19(6), pp 1186–1194.
  • Zeng, Y., Lee, S.W., Gao, L., and Ding, C.X. (2002), “Atmospheric Plasma Sprayed Coatings of Nanostructured Zirconia,” Journal of the European Ceramic Society, 22(3), pp 347–351.
  • Chen, H. and Ding, C.X. (2002), “Nanostructured Zirconia Coating Prepared by Atmospheric Plasma Spraying,” Surface and Coatings Technology, 150, pp 31–36.
  • Chen, H., Zhou, X.M., and Ding, C.X. (2003), “Investigation of the Thermo Mechanical Properties of Plasma-Sprayed Nanostructured Zirconia Coating,” Journal of the European Ceramic Society, 23, pp 1449–1455.
  • Chen, H., Zhang, Y., and Ding, C. (2002), “Tribological Properties of Nanostructured Zirconia Coatings Deposited by Plasma Spraying,” Wear, 253(7–8), pp 885–893.
  • Chen, H., Zeng, Y., and Ding, C. (2003), “Microstructural Characterization of Plasma-Sprayed Nanostructured Zirconia Powders and Coatings,” Journal of the European Ceramic Society, 23(3), pp 491–497.
  • Lima, R.S., Kucuk, A., and Berndt, C.C. (2001), “Evaluation of Micro Hardness and Elastic Modulus of Thermally Sprayed Nanostuructured Zirconia Coatings,” Surface and Coatings Technology, 135, pp 166–172.
  • Lima, R.S., Kucuk, A., and Berndt, C.C. (2002), “Bimodal Distribution of Mechanical Properties on Plasma Sprayed Nanostructured Partially Stabilized Zirconia,” Materials Science and Engineering A, 327(2), pp 224–232.
  • Lima, R.S., Kucuk, A., and Berndt, C.C. (2001), “Integrity of Nanostructured Partially Stabilized Zirconia after Plasma Spray Processing,” Materials Science and Engineering A, 313(1), pp 75–82.
  • Soltani, R., Coyle, T.W., and Mostaghimi, J. (2003), “Wear Resistance of Nanostructured Thermal Barrier Coatings,” Proceedings of the International Thermal Spray Conference, Orlando, FL, May 5–8.
  • Lima, R.S. and Marple, B.R. (2007), “Thermal Spray Coatings Engineered from Nanostructured Ceramic Agglomerated Powders for Structural, Thermal Barrier and Biomedical Applications: A Review,” Journal of Thermal Spray Technology, 16(1), pp 40–63.
  • Li, J.F., Liao, H., Wang, X.Y., Normand, B., Ji, V., Ding, C.X., and Coddet, C. (2004), “Improvement in Wear Resistance of Plasma Sprayed Yttria Stabilized Zirconia Coating Using Nanostructured Powder,” Tribology International, 37, pp 77–84.
  • Boas, M. and Bamberger, M. (1988), “Low Load Abrasive Wear Behavior of Plasma Spray and Laser-Melted Plasma Coatings,” Wear, 126, pp 197–210.
  • Khruschov, M.M. (1974), “Principles of Abrasive Wear,” Wear, 28, pp 49–88.
  • Kosel, T.H. (1992), “,” In ASM Handbook: Friction, lubrication, and wear technology, Vol.18, pp 199–213, ASM International, USA.
  • Prasad, B.K., Das, S., Jha, A.K., Modi, O.P., Dasgupta, R., and Yegneswaran, A.H. (1997), “Factors Controlling the Abrasive Wear Response of Zinc Based Alloys Silicon Carbide Particle Composite,” Composites: Part A, 28, pp 301–308.
  • Sahoo, R., Mantry, S., Sahoo, T.K., Mishra, S., and Jha, B.B. (2013), “Effect of Microstructural Variation on Erosion Wear Behaviour of Ti-6Al-4V Alloy,” Tribology Transactions, 56(4), pp 555–560.
  • Taguchi, G. (1990), Introduction to Quality Engineering, Asian Productivity Organization: Tokyo.
  • Yang, W.H. and Tarn, Y.S. (1998), “Design Optimization of Cutting Parameters for Turning Operations Based on the Taguchi Method,” Journal of Materials Processing Technology, 84, pp 121–129.
  • Mantry, S., Behera, D., Mishra, S.K., Debasish, D., Jha, B.B., and Mishra, B.K. (2013), “Erosive Wear Analysis of Plasma Sprayed Cermet Coatings Using Copper Slag & Aluminium,” Tribology Transactions, 56, pp 196–202.
  • Juárez, R.E., Lamas, D.G., Lascalea, G.E., Walsöe de Reca, N.E. (2000), “Synthesis of Nanocrystalline Zirconia Powders for TZP Ceramics by a Nitrate–Citrate Combustion Route,” Journal of the European Ceramic Society, 20, pp 133–138.
  • Karthikeyan, J., Berndt, C.C., Tikkanen, J., Reddy, S., and Herman, H. (1997), “Plasma Spray Synthesis of Nanomaterial Powders and Deposits,” Materials Science and Engineering A, 238, pp 275–286.
  • Viswanathan, V., Rea, K.E., Vaidya, A., and Seal, S. (2008), “Role of Spray Drying of Nanoagglomerates in Morphology Evolution in Nanostructured APS Coatings,” Journal of the American Ceramic Society, 91(2), pp 379–386.
  • Pierlot, C., Pawlowski, L., Bigan, M., and Chagnon, P. (2008), “Design of Experiments in Thermal Spraying: A Review,” Surface & Coatings Technology, 202, pp 4483–4490.
  • Gok, M.S., Kucuk, Y., Gencel, O., Koc, V., and Brostow, W. (2011), “Application of Taguchi Method to Study Abrasive Wear Behavior of Ceramic-Coated Specimens with Plasma Technique,” Mechanics of Advanced Materials Structures, 18(6), pp 389–395.
  • Haykin, S. (1999), Neural Networks: A Comprehensive Foundation, Prentice Hall: Upper Saddle River, NJ.
  • Rajasekaran, S. and Vijayalakshmi Pai, G.A. (2003), Neural Networks, Fuzzy Logic and Genetic Algorithms—Synthesis and Applications, Prentice Hall of India Pvt. Ltd.: New Delhi.
  • Sahu, S.P., Satapathy, A., Mishra, D., Patnaik, A., and Sreekumar, K.P. (2010), “Tribo-Performance Analysis of Fly Ash–Al Coatings Using Experimental Design and ANN,” Tribology Transactions, 53, pp 533–542.
  • Liu, Y., Fischer, T.E., and Dent, A. (2003), “Comparison of HVOF and Plasma-Sprayed Alumina/Titania Coatings—Microstructure, Mechanical Properties and Abrasion Behavior,” Surface and Coatings Technology, 167, pp 68–76.
  • Lima, R.S. and Maple, B.R. (2000), “From APS to HVOF Spraying of Conventional and Nanostructured Titania Feedstock Powders: A Study on the Enhancement of the Mechanical Properties,” Surface and Coatings Technology, 200, pp 3428–3437.
  • Wang, Y., Jiang, S., Wang, M., Wang, S., Xiao, T.D., and Strutt, P.R. (2000), “Abrasive Wear Characteristics of Plasma Sprayed Nanostructured Alumina/Titania Coatings,” Wear, 237(2), pp 176–185.
  • Cho, S.-J., Hockey, B.J., Lawn, B.R., and Bennison, S.J. (1989), “Grain Size and R-Curve Effects in the Abrasive Wear of Alumina,” Journal of the American Ceramic Society, 72, pp 1249–1252.

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