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Research Articles

High-temperature wear behaviour of HVOF sprayed 65% (NiCrSiFeBC)−35% (WC–Co) coating

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Pages 1139-1155 | Received 17 Jan 2019, Accepted 01 Jul 2019, Published online: 15 Jul 2019

References

  • Hardell J. Tribology of Hot Forming Tools and High Strength Steels, Doctoral Thesis, Lulea University of Technology, Department of Applied Physics and Mechanical Engineering, Lulea, 2009.
  • MRS Bulletin, Technology Advances. Vol. 34, November 2009, 792.
  • Deshpande M, Groseclose A, Altan T. Selection of die materials and surface treatments for increasing die life in hot and warm forging. The Ohio State University, 339 Baker Systems, Neil Ave, Columbus OH 43201 USA, www.ercnsm.org; 1971.
  • Altan T, Ngaile G, Shen G. Cold and Hot forging: Fundamentals and applications. Materials Park (OH): ASM International; 2005.
  • Harvey D. The tough truth-wear resistant coatings using high-velocity oxy-fuel. Indust Lub Tribol. 1996;48(2):11–16.
  • Nourouzi S, Azizpour JM, Salimijazi HR. Parametric study of Residual stresses in HVOF Thermally sprayed WC-12Co coatings. Mater Manuf Process. 2014;29(9):1117–1125.
  • Masoumi H, Safavi SM, Salehi M, et al. Effect of Grinding on the Residual Stress and adhesion strength of HVOF Thermally sprayed WC-10Co-4Cr coating. Mater Manuf Process. 2014;29(9):1139–1151.
  • Stanciu EM, Pascu A, Ţierean MH, et al. Dual coating Laser Cladding of NiCrBSi and Inconel 718. Mater Manuf Process. 2016;31(12):1556–1564.
  • Karimi MR, Salimijazi HR, Golozar MA. Effects of remelting processes on porosity of NiCrBSi flame sprayed coatings. Surf. Eng. 2016;32(3):238–243.
  • Rosso M, Bennani A. Studies of new applications of Ni-based powders for hardfacing processes. PM World Congress Thermal Spraying/Spray Forming. 1998;1:524–530.
  • Kaiming W, Yulong L, Hanguang F, et al. A study of laser cladding NiCrBSi/Mo composite coatings. Surf Eng. 2018;34(4):267–275.
  • Singh S, Kaur M. Mechanical and microstructural properties of NiCrFeSiBC/Cr3C2 composite coatings-Part I. Surf Eng. 2016;32(7):464–474.
  • Singh S, Kaur M. Solid particle erosion behaviour of NiCrFeSiBC/Cr3C2 composite coatings- Part II. Surf Eng. 2016;32(7):475–489.
  • Gonzalez R, Cadenas M, Fernández R, et al. Wear behaviour of flame sprayed NiCrBSi coating remelted by flame or by laser. Wear. 2007;262(3-4):301–307.
  • Rodriguez J, Martin A, Fernández R, et al. An experimental study of the wear performance of NiCrBSi thermal spray coatings. Wear. 2003;255(7-12):950–955.
  • Serres N, Hlawka F, Costil S, et al. An investigation of the mechanical properties and wear resistance of NiCrBSi coatings carried out by in situ laser remelting. Wear. 2011;270(9-10):640–649.
  • Guo C, Zhou J, Chen J, et al. High temperature wear resistance of laser cladding NiCrBSi and NiCrBSi/WC-Ni composite coatings. Wear. 2011;270(7-8):492–498.
  • Zikin A, Antonov M, Hussainova I, et al. High temperature wear of cermet particle reinforced NiCrBSi hard facings. Tribol Int. 2013;68:45–55.
  • Garcia A, Fernandez MR, Cuetos JM, et al. Study of the sliding wear and friction behavior of WC + NiCrBSi laser cladding coatings as a function of actual concentration of WC reinforcement particles in ball-on-disk test. Tribol Letters. 2016;63(3):41.
  • Ahn HS, Lee CH. A study on the wear characteristics of plasma sprayed NiCrSiB/WC-12Co mixed coating). Proceedings of the 15th International thermal spray Conference; 1998; Nice, France:175–180.
  • Gupta RN, Das AK, Nagahanumaiah HS. Pulse Electrocodeposited Ni–WC composite coating. Mater Manuf Process. 2016;31(1):42–47.
  • Kaushal S, Gupta D, Bhowmick H. On processing of Ni-WC based functionally graded composite clads through microwave heating. Mater Manuf Process. 2018;33(8):822–828.
  • Singh S, Gupta D, Jain V. Processing of Ni-WC-8Co MMC casting through microwave melting. Mater Manuf Process. 2018;33(1):26–34.
  • Yao SH. Tribological behaviour of NiCrBSi-WC(Co) coatings. Mater Research Innovations. 2014;18(2):332–337.
  • Bolelli G, Borner T, Milanti A, et al. Tribological behavior of HVOF- and HVAF-sprayed composite coatings based on Fe-alloy + WC-12% Co. Surf Coat Technol. 2014;248:104–112.
  • Molina-Claros J, Hdz-García HM, Alvarez-Vera M, et al. Characterization of PTA processed overlays without and with WC nanoparticles. Surf Eng. 2017;33(11):857–865.
  • Dhakar BM, Dwivedi DK, Sharma SP. Studies on remelting of tungsten carbide and rare earth modified nickel base alloy composite coating. Surf Eng. 2012;28(1):73–80.
  • Shu D, Li Z, Yao C, et al. In situ synthesized WC reinforced nickel coating by laser cladding. Surf Eng. 2018;34(4):276–282.
  • Lu SP, Kwon OY, Guo Y. Wear behavior of brazed WC/NiCrBSi(Co) composite coatings. Wear. 2003;254(5-6):421–428.
  • Kim HJ, Hwang SY, Lee CH, et al. Assessment of wear performance of flame sprayed and fused Ni-based coatings. Surf Coat Technol. 2003;172(2-3):262–269.
  • Xu JS, Zhang XC, Xuan FZ, et al. Microstructure and sliding wear resistance of Laser Cladded WC/Ni composite coatings with different Contents of WC particle. J Mater Eng Perf. 2012;21(9):1904–1911.
  • Wang YY, Li CJ, Ohmori A. Examination of factors influencing the bond strength of high velocity oxy-fuel sprayed coatings. Surf Coat Technol. 2006;200:2923–2928.
  • Sobolev VV, Guilemany JM, Nutting J, et al. Development of substrate-coating adhesion in thermal spraying. Inter Mater Reviews. 1997;42(3):117–136.
  • Ramesh MR, Prakash S, Nath SK, et al. Solid particle erosion of HVOF sprayed WC-Co/NiCrFeSiB coatings. Wear. 2010;269:197–205.
  • Miranda JC, Ramalho A. Abrasion resistance of thermal sprayed composite coatings with a nickel alloy matrix and a WC hard phase. Effect of deposition technique and re-melting. Tribol Letters. 2001;11(1):37–47.
  • Sari NY, Yilmaz M. Improvement of wear resistance of wire drawing rolls with Cr-Ni-B-Si + WC thermal spraying powders. Surf Coat Technol. 2008;202:3136–3141.
  • Karaoglanli AC, Oge M, Doleker KM, et al. Comparison of tribological properties of HVOF sprayed coatings with different composition. Surf Coat Technol. 2017;318:299–308.
  • Stoica V, Ahmed R, Itsukaichi T. Influence of heat-treatment on the sliding wear of thermal spray cermet coatings. Surf Coat Technol. 2005;199:7–21.
  • Torgerson TB, Harris MD, Alidokht SA, et al. Room and elevated temperature sliding wear behavior of cold sprayed Ni-WC composite coatings. 2018. doi: 10.1016/j.surfcoat.2018.05.090
  • Stott FH, Lin S, Wood C. The Structure And mechanism of formation of the ‘glaze’ oxide layers produced On nickel-based Alloys during wear At high temperatures. Corro Sci. 1973;13:449–469.
  • Winkelmann H, Badisch E, Varga M, et al. Wear mechanisms at high temperatures. Part 3: changes of the wear mechanism in the Continuous impact abrasion test with Increasing testing temperature. Tribol Letters. 2010;37:419–429.
  • Weng Z, Wang A, Wu X, et al. Wear resistance of diode laser-clad Ni/WC composite coatings at different temperatures. Surf Coat Technol. 2016;304:283–292.

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