336
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

Laser material processing of nickel superalloy for improved erosion resistance

, , &
Pages 1596-1605 | Received 27 Oct 2016, Accepted 03 Jun 2017, Published online: 11 Jul 2017

References

  • Srivatsan, T.S.; Manigandan, K.; Sudarshan, T.S. Additive Manufacturing Innovations, Advances, and Applications; CRC Press: Boca Raton, FL, 2016; 1.
  • Adam Khan, M.; Sundarrajan, S.; Natarajan, S. Influence of plasma coatings on inconel 617 for gas turbine applications. Surface Engineering 2014, 30 (9), 656–661.
  • Thirugnanasambantham, K.G.; Natarajan, S. Degradation mechanism for high temperature erosion in surface modified IN718 superalloy. Surface Engineering 2015, 31 (1), 24–28.
  • Vicenzi, J.; Villanova, D.L.; Lima, M.D.; Takimi, A.S.; Marques, C.M.; Bergmann, C.P. HVOF-coatings against high temperature erosion (∼300°C) by coal fly ash in thermoelectric power plant. Materials and Design 2006, 27 (3), 236–242.
  • Karimi, A.; Martin, J.L. Cavitation erosion of materials. International Metals Reviews 1986, 31, 1–26.
  • Hung, F.Y.; Chen, L.H.; Lui, T.S. Impact angle of maximum erosion rate of wear resistant spheroidal graphite cast iron eroded by SiO2 and AI2O3 particles. International Journal of Cast Metals Research 2003, 16, 505–513.
  • Avcu, E.; Fidan, S.; Yıldıran, Y.; Sınmazçelik, T. Solid particle erosion behaviour of Ti6Al4V alloy. Tribology: Materials, Surfaces & Interfaces 2013, 7 (4), 201–210.
  • Sheldon, G.L.; Finnie, I. On the ductile behavior of nominally brittle materials during erosive cutting. Indian Journal of Engineering and Materials Sciences 1966, 88 (4), 387–392.
  • Evans, A.G.; Gulden, M.E.; Rosenblatt, M. Impact damage in brittle materials in the elastic–plastic response regime. Proceedings of the Royal Society of London 1978, 361 (1706), 343–365.
  • Sheldon, G.L.; Finnie, I. The mechanism of material removal in the erosive cutting of brittle materials. Journal of Manufacturing Science and Engineering 1966, 88, 393–400.
  • Wheeler, D.W.; Wood, R.J.K. Fracture of diamond coatings by high velocity sand erosion. Philosophical Magazine 2009, 89, 285–310.
  • Stack, M.M.; Stott, F.H.; Wood, G.C. High temperature erosion of pre-oxidized and as received alloys: Effects of impact angle, temperature and hot hardness. Materials at High Temperatures 1991, 9, 153–159.
  • Sprague, R.A.; Friesen, S.J. Superalloy component durability enhancements. The Journal of the Minerals, Metals & Materials Society 1986, 38 (7), 24–30.
  • Eliasen, K.M.; Christiansen, T.L.; Somers, M.A.J. Low temperature gaseous nitriding of Ni based superalloys. Surface Engineering 2010, 26 (4), 248–255.
  • Rickerby, D.S.; Winstone, M.R. Coatings for gas turbines. Materials and Manufacturing Processes 1992, 7 (4), 495–526.
  • Khajavi, M.R.; Shariata, M.H.; Pasha, A. Aluminide coatings for nickel based superalloys. Surface Engineering 2004, 20 (4), 261–265.
  • Palanisamy, D.; Senthil, P. Machinability study of laser surface treated 15–5 PH stainless steel. Materials and Manufacturing Processes 2015, 31, 1755–1762.
  • Camoletto, A.; Molino, G.; Talentino, S. Laser hardening of turbine blades. Materials and Manufacturing Processes 2007, 6 (1), 53–65.
  • Sudarshan, T.S. Surface Modification Technologies: An Engineers Guide. CRC Press: New York, NY, 1989; 421.
  • Zhao, W.; Lin, X.; Liu, F.; Zhao, X.; Chen, J.; Huang, W. Effect of heat treatment on microstructure and mechanical properties of laser solid forming Inconel 718 superalloy. Chinese Journal of Lasers 2009, 36 (12), 3220–3225.
  • Yilbas, B.S.; Akhtar, S.S.; Karatas, C. Laser surface treatment of Inconel 718 alloy: Thermal stress analysis. Optics and Lasers in Engineering 2010, 48, 740–749.
  • Ruifeng, L.; Yajuan, J.; Zhuguo, L.; Yanyan, Z.; Mingfang, W. Effect of the remelting scanning speed on the amorphous forming ability of Ni-based alloy using laser cladding plus a laser remelting process. Surface and Coatings Technology 2014, 259 (Part C), 725–731.
  • Gang, B.; Motomichi, Y.; Kenji, S. Precipitation and Cr depletion profiles of Inconel 182 during heat treatments and laser surface melting. Journal of Materials Processing Technology 2009, 209, 416–425.
  • Hashim, M.; SarathRaghavendra Babu, K.E.; Duraiselvam, M.; Natu, H. Improvement of wear resistance of Hastelloy C-276 through laser surface melting. Materials and Design 2013, 46, 546–551.
  • Aydinöz, M.E.; Brenne, F.; Schaper, M.; Schaak, C.; Tillmann, W.; Nellesen, J.; Niendorf, T. On the microstructural and mechanical properties of post-treated additively manufactured Inconel 718 superalloy under quasi-static and cyclic loading. Materials Science and Engineering: A 2016, 669 (4), 246–258.
  • Wang, C.; Shen, X.J.; An, Z.B.; Zhou, L.C.; Chai, Y. Effects of laser shock processing on microstructure and mechanical properties of K403 nickel-alloy. Materials and Design 2016, 89 (5), 582–588.
  • ASTM G76–02 Standard Test Method for Conducting Erosion Tests by Solid Particle Impingement Using Gas Jets; ASTM International: West Conshohocken, PA, 2007.
  • Fencheng, L.; Xin, L.; Chunping, H.; Menghua, S.; Gaolin, Y.; Jing, C.; Weidong, H. The effect of laser scanning path on microstructures and mechanical properties of laser solid formed nickel-base superalloy Inconel 718. Journal of Alloys and Compounds 2011, 509 (13), 4505–4509.
  • Ahmad, M.; Akhter, J.I.; Iqbal, M.; Akhtar, M.; Ahmed, E.; Shaik, M.A. Surface modification of Inconel C-276 by SiC addition and electron beam melting. Journal of Nuclear Materials 2005, 336 (1), 120–124.
  • Hashim, M.; SarathRaghavendra Babu, K.E.; Duraiselvam, M.; Natu, H.; Muthupandi, V.; Sivaprasad, K.; Rajith, K.R. Tribological studies on laser surface melted Hastelloy C-276. Surface Engineering 2013, 29, 531–535.
  • Samantaroy, P.K.; Girija1, S.; Kaul, R.; KamachiMudali, U. Enhancement of corrosion resistance of nickel based superalloys by laser surface melting. Surface Engineering 2013, 29, 522–530.
  • Shimizu, K.; Xinba, Y.; Ishida, M.; Kato, T. High temperature erosion characteristics of surface treated SUS410 stainless steel. Wear 2011, 271, 1349–1356.
  • Thirugnanasambantham, K.G.; Natarajan, S. Degradation through erosion: mechanistic studies on IN-718 superalloy under hot air jet conditions. The Journal of Materials Engineering and Performance 2015, 24 (7), 2605–2613.
  • Oka, Y.I.; Ohnogi, H.; Hosokawa, T.; Matsumura, M. The impact angle dependence of erosion damage caused by solid particle impact. Wear 1997, 203–204, 573–579.
  • Hutchings, I.M. Deformation of metal surfaces by the oblique impact of square plates. International Journal of Mechanical Sciences 1977, 19, 45–52.
  • Winter, R.E.; Hutchings, I.M. Solid particle erosion studies using single angular particles. Wear 1974, 29, 181–194.
  • Lindsley, B.A.; Marder, A.R. The effect of velocity on the solid particle erosion rate of alloys. Wear 1999, 225–229, 510–516.
  • Akihiro, Y.; Kazuo, M.; Masanobu, M. Critical impact velocity in the solid particles impact erosion of metallic materials. Wear 1999, 233–235, 468–475.
  • Oka, Y.I.; Ohnogi, H.; Hosokawa, T.; Matsumura, M. The impact angle dependence of erosion damage caused by solid particle impact. Wear 1997, 203–204, 573–579.
  • Levin, B.F.; Vecchio, K.S.; DuPont, J.N.; Marder, A.R. Solid particle erosion resistance and high strain rate deformation behavior of Inconel-625 alloy. Journal of the Minerals, Metals, and Materials Society 1997, 479–488.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.