1,171
Views
19
CrossRef citations to date
0
Altmetric
Research Article

Degradation mechanism for high-temperature sliding wear in surface-modified In718 superalloy

ORCID Icon, , , , , , , & | (Reviewing editor) show all
Article: 1501864 | Received 25 Oct 2017, Accepted 13 Jul 2018, Published online: 03 Aug 2018

References

  • Adam Khan, M. , Sundarrajan, S. , & Natarajan, S. (2014). Influence of plasma coatings on Inconel 617 for gas turbine applications. Surface Engineering , 30, 656–661. doi:10.1179/1743294414Y.0000000296
  • Benoy, P. A. , & Dellacorte, C. (1996). Au/Cr sputter coating for the protection of alumina during sliding at high temperatures. Tribology Transactions , 39(3), 670–676. doi:10.1080/10402009608983581
  • Braza, J. F. , Cheng, H. S. , Fine, M. E. , Gangopadhyay, A. K. , Keer, L. M. , & Worden, R. E. (1989). Mechanical failure mechanisms in ceramic sliding and rolling contacts. Tribology Transactions , 32(1), 1–8. doi:10.1080/10402008908981855
  • Bulut Coskun, M. , Aksoy, S. , & Mahmut, F. A. (2012). Friction and wear characteristics of Haynes 25, 188, and 214 superalloys against Hastelloy X up to 550ο C. Tribology Letters , 45(3), 497–503. doi:10.1007/s11249-011-9912-5
  • Cho, S.-J. , Hockey, B. J. , Lawn, B. R. , & Bennison, S. J. (1989). Grain size and R-curve effects in the abrasive wear of alumina. Journal of the American Ceramic Society , 72(7), 1249–1252. doi:10.1111/jace.1989.72.issue-7
  • Demkin, N. B. , & Izmailov, V. V. (1991). Surface topography and properties of frictional contacts. Tribology International , 24(1), 21–24. doi:10.1016/0301-679X(91)90058-H
  • Dong, W. P. , Sullivan, P. J. , & Stout, K. J. (1992). Comprehensive study of parameters for characterizing three dimensional surface topography I: Some inherent properties of parameter variation. Wear , 159, 161–171. doi:10.1016/0043-1648(92)90299-N
  • Du, H. L. , Datta, P. K. , Inman, I. A. , Geurts, R. , & Kubel, C. (2003). Microscopy of wear affected surface produced during sliding of Nimonic 80A against Stellite 6 at 20°C. Material Science and Engineering A , 357, 412–422. doi:10.1016/S0921-5093(03)00258-2
  • Erdogan, F. , & Joseph, P. F. (1989). Toughening of ceramics through crack bridging by ductile particles. Journal of the American Ceramic Society , 72(2), 262–270. doi:10.1111/j.1151-2916.1989.tb06112.x
  • Eyre, T. S. (1978). The mechanisms of wear. Tribology International , 11, 91–96. doi:10.1016/0301-679X(78)90135-4
  • Gurrappa, I. , Yashwanth, I. V. S. , & Gogia, A. K. (2011). The behavior of superalloys in marine gas turbine engine conditions. Journal Surf Engg Materials Advanced Techn , 1, 144–149.
  • Hamed, A. , & Tabakoff, W. (2006). Erosion and deposition in turbomachinery. Journal of Propulsion and Power , 22(2), 350–360. doi:10.2514/1.18462
  • Lawn, B. R. , Evans, A. G. , & Marshall, D. B. (1980). Elastic/plastic indentation damage in ceramics: The median/radial crack system. Journal of the American Ceramic Society , 63, 574–581. doi:10.1111/j.1151-2916.1980.tb10768.x
  • Restall, J. E. , & Stephenson, D. J. (1987). High temperature erosion of coated superalloys for gas turbines. Material Science and Engineering , 88, 273–282.
  • Sandeep, A. , Shukla, A. , & Chona, R. (2011). Dynamic constitutive behavior of HastelloyX under thermo-mechanical loads. Journal Materials Sciences , 46(14), 4971–4979. doi:10.1007/s10853-011-5414-y
  • Sarkar, A. D. (1976). Wear of metals (pp. 24–41). Pergamon Press New York
  • Srinivasan, S. , & Scattergood, R. O. (1991). R-curve effects in the solid particle erosion of ceramics. Wear , 42, 116–133.
  • Steinbrech, R. W. , Reich, A. , & Schaarwachter, W. (1990). R-curve behavior of long cracks in alumina. Journal of the American Ceramic Society , 73(7), 2009–2015. doi:10.1111/jace.1990.73.issue-7
  • Stott, F. H. , & Jordan, M. P. (2001). The effect of load and substrate hardness on development and maintenance of wear-protective layer during sliding at elevated temperature. Wear , 250, 319–500. doi:10.1016/S0043-1648(01)00601-9
  • Sugimura, J. , & Kimura, Y. (1984). Characterization of topographical changes during lubricated wear. Wear , 98, 101–106. doi:10.1016/0043-1648(84)90220-5
  • Tabakoff, W. (1999). Erosion resistance of superalloys and different coatings exposed to particulate flows at high temperature. Surface and Coatings Technology , 120 –121 , 542–547. doi:10.1016/S0257-8972(99)00434-X
  • Thirugnanasambantham, K. G. , & Natarajan, S. (2015). Degradation mechanism for high temperature erosion in surface modified In718 superalloy. Surface Engineering , 31, 24–28.
  • Trabelsi, R. , Treheux, D. , Orange, G. , Fantozzi, G. , Homerin, P. , & Thevenot, F. (1989). Relationship between mechanical properties and wear resistance of alumina-zirconia ceramic composites. Tribology Transactions , 32(1), 77–84. doi:10.1080/10402008908981865
  • Turunen, E. , Varis, T. , Gustafsson, T. E. , Keskinen, J. , Fält, T. , & Hannula, S.-P. (2006). Parameter optimization of HVOF sprayed nanostructured alumina and alumina-nickel composite coatings. Surface and Coatings Technology , 200(16–17), 4987–4994. doi:10.1016/j.surfcoat.2005.05.018
  • Yılmaz, R. , Kurt, A. O. , Demir, A. , & Tatlı, Z. (2007). Effects of TiO2 on the mechanical properties of the Al2O3–TiO2 plasma sprayed coating. Journal of the European Ceramic Society , 27, 1319–1323. doi:10.1016/j.jeurceramsoc.2006.04.099
  • Yust, C. S. , & Carignan, F. J. (1985). Observations on the sliding wear of ceramics. Tribology Transactions , 28(2), 245–252.