14
A. Patil et al.
mechanical alloying process followed by spark plasma sintering technique is a
feasible route for processing these in situ Ni-Ti-C metal matrix composites with
improved mechanical and tribological properties.
References
1. Miracle DB (2005) Metal matrix composites—from science to technological significance.
Compos Sci Technol 65(15–16):2526–2540
2. Bakshi SR, Lahiri D, Agarwal A (2010) Carbon nanotube reinforced metal matrix composites—
a review. Int Mater Rev 55(1):41–64
3. Ibrahim IA, Mohamed FA, Lavernia EJ (1991) Particulate reinforced metal matrix composites—a review. J Mater Sci 26(5):1137–1156
4. Zhu X, Zhao K, Cheng B, Lin Q, Zhang X, Chen T, Su Y (2001) Synthesis of nanocrystalline
TiC powder by mechanical alloying. Mater Sci Eng C 16(1–2):103–105
5. Saheb N, Iqbal Z, Khalil A, Hakeem AS, Al Aqeeli N, Laoui T, Al-Qutub A, Kirchner R (2012)
Spark plasma sintering of metals and metal matrix nanocomposites: a review. J Nanomater 2012
6. Borkar T, Sosa J, Hwang JY, Scharf TW, Tiley J, Fraser H, Banerjee R (2014) Laser-deposited
in situ TiC-reinforced nickel matrix composites: 3D microstructure and tribological properties.
JOM 66(6):935–942
7. Gopagoni S, Hwang JY, Singh ARP, Mensah BA, Bunce N, Tiley J, Scharf TW, Banerjee R
(2011) Microstructural evolution in laser deposited nickel–titanium–carbon in situ metal matrix
composites. J Alloys Compd 509(4):1255–1260
8. Wang H, Zhang S, Zhu J, Huang J, Liu H, Zhang H (2009) In situ TiC-reinforced Ni-based
composite coating prepared by flame spraying using sucrose as the source of carbon. J Therm
Spray Technol 18(1):103–109
9. Guo C, Chen J, Zhou J, Zhao J, Wang L, Yu Y, Zhou H (2012) Effects of WC–Ni content
on microstructure and wear resistance of laser cladding Ni-based alloys coating. Surf Coat
Technol 206(8–9):2064–2071
10. Tjong SC, Ma ZY (2000) Microstructural and mechanical characteristics of in situ metal matrix
composites. Mater Sci Eng R Rep 29(3–4):49–113
11. Tokita M (1997) Mechanism of spark plasma sintering. In: Proceedings of the international
symposium on microwave, plasma and thermochemical processing of advanced materials, pp
69–76
12. Mogonye JE, Srivastava A, Gopagoni S, Banerjee R, Scharf TW (2016) Solid/self-lubrication
mechanisms of an additively manufactured Ni–Ti–C metal matrix composite. Tribol Lett
64(3):37
13. Saba F, Kabiri E, Khaki JV, Sabzevar MH (2016) Fabrication of nanocrystalline TiC coating
on AISI D2 steel substrate via high-energy mechanical alloying of Ti and C. Powder Technol
288:76–86
14. Karthiselva NS, Bakshi SR (2016) Carbon nanotube and in-situ titanium carbide reinforced
titanium diboride matrix composites synthesized by reactive spark plasma sintering. Mater Sci
Eng A 663:38–48
15. Pierson HO (1996) Handbook of refractory carbides & nitrides: properties, characteristics,
processing and apps. William Andrew, Noyes Publications, New Jersey
16. Viswanathan V, Laha T, Balani K, Agarwal A, Seal S (2006) Challenges and advances in
nanocomposite processing techniques. Mater Sci Eng R Rep 54(5–6):121–285
17. Borkar T, Hwang J, Hwang JY, Scharf TW, Tiley J, Hong SH, Banerjee R (2014) Strength
versus ductility in carbon nanotube reinforced nickel matrix nanocomposites. J Mater Res
29(06):761–769
18. Suryanarayana C (2001) Mechanical alloying and milling. Prog Mater Sci 46(1–2):1–184
Précédent

- 27/481

Suivant