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Published in: Journal of Materials Engineering and Performance 5/2022

14-01-2022 | Technical Article

Friction Surfaced Alloy 718 Deposits: Effect of Process Parameters on Coating Performance

Authors: S. Cyril Joseph Daniel, R. Damodaram, G. M. Karthik, B. Lakshmana Rao

Published in: Journal of Materials Engineering and Performance | Issue 5/2022

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Abstract

The repair of alloy 718 parts used in aerospace and gas turbine industry is expensive, as well as, takes a long time. While many fusion-based repair technologies are available, their applicability is rather limited as they present various metallurgical problems, such as cracking, segregation, residual stresses. This work proposes using a solid-state deposition technique, friction deposition, to conduct these repairs in alloy 718. Deposits with a wide range of process parameter combinations are produced. To establish the optimal process parameters for friction deposition of alloy 718, the Taguchi design of experiments technique is applied. Further, the influence of axial force, spindle speed, and traverse speed on shear strength is investigated using Analysis of Variance. It was found that the axial force is the most dominant factor influencing the shear strength of coating, followed by traverse speed and spindle speed. Rotational speed significantly influenced the grain size of the deposits. The average grain size of the deposits increased with increasing the rotational speed (1000 to 1400 rpm). The post-deposition direct aged alloy 718 samples showed tensile strength higher than the minimum requirement of Aerospace Material Specification for the bulk materials in the solution treated and aged condition.

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Literature
1.
go back to reference C.T. Sims, N.S. Stoloff and W.C. Hagel, Superalloys II, Wiley, New York, 1987. C.T. Sims, N.S. Stoloff and W.C. Hagel, Superalloys II, Wiley, New York, 1987.
2.
go back to reference J. He, S. Fukyyama and K. Yokogawa, γ″ Precipitate in Inconel 718, J. Mater. Sci. Technol., 1994, 10(4), p 293–303. J. He, S. Fukyyama and K. Yokogawa, γ″ Precipitate in Inconel 718, J. Mater. Sci. Technol., 1994, 10(4), p 293–303.
5.
go back to reference J. Durocher and N.L. Richards, Characterization of the Micro-Welding Process for Repair of Nickel Base Superalloys, J. Mater. Eng. Perform., 2007, 16(6), p 710–719. CrossRef J. Durocher and N.L. Richards, Characterization of the Micro-Welding Process for Repair of Nickel Base Superalloys, J. Mater. Eng. Perform., 2007, 16(6), p 710–719. CrossRef
8.
go back to reference X. Huang and W. Miglietti, Wide Gap Braze Repair of Gas Turbine Blades and Vanes-a Review, J. Eng. Gas Turbines Power, 2012, 134(1), p 1–17. CrossRef X. Huang and W. Miglietti, Wide Gap Braze Repair of Gas Turbine Blades and Vanes-a Review, J. Eng. Gas Turbines Power, 2012, 134(1), p 1–17. CrossRef
9.
go back to reference G.D. Janaki Ram, A. Venugopal Reddy, K. Prasad Rao, G.M. Reddy and J.K. Sarin Sundar, Microstructure and Tensile Properties of Inconel 718 Pulsed Nd-YAG Laser Welds, J. Mater. Process. Technol., 2005, 167(1), p 73-82T. CrossRef G.D. Janaki Ram, A. Venugopal Reddy, K. Prasad Rao, G.M. Reddy and J.K. Sarin Sundar, Microstructure and Tensile Properties of Inconel 718 Pulsed Nd-YAG Laser Welds, J. Mater. Process. Technol., 2005, 167(1), p 73-82T. CrossRef
10.
go back to reference K. Sivaprasad, S. Ganesh Sundara Raman, P. Mastanaiah and G. Madhusudhan Reddy, Influence of Magnetic Arc Oscillation and Current Pulsing on Microstructure and High Temperature Tensile Strength of Alloy 718 TIG Weldments, Mater. Sci. Eng. A, 2006, 428(1–2), p 327–331. CrossRef K. Sivaprasad, S. Ganesh Sundara Raman, P. Mastanaiah and G. Madhusudhan Reddy, Influence of Magnetic Arc Oscillation and Current Pulsing on Microstructure and High Temperature Tensile Strength of Alloy 718 TIG Weldments, Mater. Sci. Eng. A, 2006, 428(1–2), p 327–331. CrossRef
15.
go back to reference J.J.S. Dilip and G.D. Janaki Ram, Friction Freeform Fabrication of Superalloy Inconel 718: Prospects and Problems, Metall. Mater. Trans. B Process Metall. Mater. Process. Sci., 2014, 45(1), p 182–192. CrossRef J.J.S. Dilip and G.D. Janaki Ram, Friction Freeform Fabrication of Superalloy Inconel 718: Prospects and Problems, Metall. Mater. Trans. B Process Metall. Mater. Process. Sci., 2014, 45(1), p 182–192. CrossRef
18.
go back to reference G.M. Karthik, P. Mastanaiah, G.D. Janaki Ram and R.S. Kottada, Friction Buttering: A New Technique for Dissimilar Welding, Metall. Mater. Trans. B Process Metall. Mater. Process. Sci., 2017, 48(3), p 1416–1422. CrossRef G.M. Karthik, P. Mastanaiah, G.D. Janaki Ram and R.S. Kottada, Friction Buttering: A New Technique for Dissimilar Welding, Metall. Mater. Trans. B Process Metall. Mater. Process. Sci., 2017, 48(3), p 1416–1422. CrossRef
19.
go back to reference G.M. Karthik, G.D. Janaki Ram and R.S. Kottada, Use of Friction Buttering for Overcoming HAZ Liquation Cracking, Metall. Mater. Trans. B Process. Metall. Mater. Process. Sci., 2017, 48(5), p 2274–2280. CrossRef G.M. Karthik, G.D. Janaki Ram and R.S. Kottada, Use of Friction Buttering for Overcoming HAZ Liquation Cracking, Metall. Mater. Trans. B Process. Metall. Mater. Process. Sci., 2017, 48(5), p 2274–2280. CrossRef
20.
go back to reference P.J. Ross, Taguchi Techniques for Quality Engineering: Loss Function, Orthogonal Experiments, Parameter and Tolerance Design, McGraw-Hill, New York NY, 1988. P.J. Ross, Taguchi Techniques for Quality Engineering: Loss Function, Orthogonal Experiments, Parameter and Tolerance Design, McGraw-Hill, New York NY, 1988.
21.
go back to reference AMS 5596, Aerospace Material Specification for Inconel 718, (UNS NO7718) Sheets, Strips and Plates, Society for Automotive Engineers, Warrendale, PA, 1984. AMS 5596, Aerospace Material Specification for Inconel 718, (UNS NO7718) Sheets, Strips and Plates, Society for Automotive Engineers, Warrendale, PA, 1984.
24.
go back to reference H.K. Rafi, G.D.J. Ram, G. Phanikumar and K.P. Rao, Friction Surfaced Tool Steel (H13) Coatings on Low Carbon Steel: A Study on the Effects of Process Parameters on Coating Characteristics and Integrity, Surf. Coat. Technol., 2010, 205(1), p 232–242. CrossRef H.K. Rafi, G.D.J. Ram, G. Phanikumar and K.P. Rao, Friction Surfaced Tool Steel (H13) Coatings on Low Carbon Steel: A Study on the Effects of Process Parameters on Coating Characteristics and Integrity, Surf. Coat. Technol., 2010, 205(1), p 232–242. CrossRef
31.
go back to reference S. Hanke, I. Sena, R.S. Coelho and J.F. dos Santos, Microstructural Features of Dynamic Recrystallization in Alloy 625 Friction Surfacing Coatings, Mater. Manuf. Process., 2018, 33(3), p 270–276. CrossRef S. Hanke, I. Sena, R.S. Coelho and J.F. dos Santos, Microstructural Features of Dynamic Recrystallization in Alloy 625 Friction Surfacing Coatings, Mater. Manuf. Process., 2018, 33(3), p 270–276. CrossRef
32.
go back to reference M. Smith, L. Bichler, J. Gholipour and P. Wanjara, Mechanical Properties and Microstructural Evolution of In-Service Inconel 718 Superalloy Repaired by Linear Friction Welding, Int. J. Adv. Manuf. Technol., 2017, 90(5–8), p 1931–1946. CrossRef M. Smith, L. Bichler, J. Gholipour and P. Wanjara, Mechanical Properties and Microstructural Evolution of In-Service Inconel 718 Superalloy Repaired by Linear Friction Welding, Int. J. Adv. Manuf. Technol., 2017, 90(5–8), p 1931–1946. CrossRef
34.
go back to reference H. Tokisue, K. Katoh, T. Asahina and T. Ushiyama, Mechanical Properties of 5052/2017 Dissimilar Aluminum Alloys Deposit by Friction Surfacing, Keikinzoku/J. Jpn. Inst. Light Met., 2004, 54(9), p 373–379. CrossRef H. Tokisue, K. Katoh, T. Asahina and T. Ushiyama, Mechanical Properties of 5052/2017 Dissimilar Aluminum Alloys Deposit by Friction Surfacing, Keikinzoku/J. Jpn. Inst. Light Met., 2004, 54(9), p 373–379. CrossRef
35.
go back to reference H. Sakihama, H. Tokisue and K. Katoh, Mechanical Properties of a Friction Surfaced 5052 Aluminum Alloy, Keikinzoku/J. Jpn. Inst. Light Met., 2002, 52(8), p 346–351. CrossRef H. Sakihama, H. Tokisue and K. Katoh, Mechanical Properties of a Friction Surfaced 5052 Aluminum Alloy, Keikinzoku/J. Jpn. Inst. Light Met., 2002, 52(8), p 346–351. CrossRef
Metadata
Title
Friction Surfaced Alloy 718 Deposits: Effect of Process Parameters on Coating Performance
Authors
S. Cyril Joseph Daniel
R. Damodaram
G. M. Karthik
B. Lakshmana Rao
Publication date
14-01-2022
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 5/2022
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-021-06488-4

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