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Research Article

Combustion-synthesised TiAl/NiAl layered intermetallic composite: synthesis, phase composition, and microstructure

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Accepted 10 Jan 2024, Published online: 26 Jan 2024

References

  • Doorbar P, Dixon M, Chatterjee A. Aero-engine titanium: from alloys to composites. Mater Sci Forum. 2009;618:127–134. doi: 10.4028/www.scientific.net/MSF.618-619.127
  • Bochenek K, Basista M. Advances in processing of NiAl intermetallic alloys and composites for high temperature aerospace applications. Prog Aerosp Sci. 2015;79:136–146. doi: 10.1016/j.paerosci.2015.09.003
  • Kothari K, Radhakrishnan R, Wereley NM. Advances in gamma titanium aluminides and their manufacturing techniques. Prog Aero Sci. 2012;55:1–16. doi: 10.1016/j.paerosci.2012.04.001
  • Shashi B, Singh T, Kumar V, et al. A systematic review on recent progress in advanced joining techniques of the lightweight materials. AIMS Mat Sci. 2021;8(1):62–81. doi: 10.3934/matersci.2021005
  • Wan B, Li XQ, Pan CL, et al. Microstructure and mechanical properties of TiAl/Ni-based superalloy joints vacuum brazed with Ti-Zr-Fe-Cu-Ni- Co-Mo filler metal. Rare Met. 2021;40:2134–2142. doi: 10.1007/s12598-020-01550-x
  • Liu CT, Stiegler JO, Froes FH. Ordered intermetallics. In: Properties and selection: nonferrous alloys and special purpose materials. Metals handbook. Properties and selection: nonferrous alloys and special-purpose materials, 10th ed., Vol. 2, ASM International, 1990:p. 3470. doi: 10.31399/asm.hb.v02.a0001102
  • Merzhanov AG, Borovinskaya IP. Self-propagating high-temperature synthesis of refractory inorganic compounds. Dokl Akad Nauk SSSR. 1972;204(2):366–369.
  • Avakyan PB, Martirosyan KS, Mkrtchyan SO. Phase-formation during the SHS of barium ferrites. Int J Self-Propag High-Temp Synth. 1992;1(4):551–554.
  • Mukasyan AS, White JDE. Combustion joining of refractory materials. Int J Self-Propag High-Temp Synth. 2007;16(3):154–168. doi: 10.3103/S1061386207030089
  • Sytschev AE, Dominique V, Boyarchenko OD, et al. Combustion synthesis in bi-layered (Ti-Al)/(Ni-Al) system. J Mater Process Technol. 2017;240:60–67. doi: 10.1016/j.jmatprotec.2016.09.010
  • Cho GS, Yang JH, Choe KH, et al. Effect of applied pressure on the joining of combustion synthesized Ni3Al intermetallics with Al alloy. J Mater Sci Technol. 2008;24(1):123–126.
  • Kopit Y. The ability of systems based on Ni, Al and Ti to be synthesized by self-propagating high-temperature synthesis (SHS). Intermetallics. 2001 May;9(5):387–393. doi: 10.1016/S0966-9795(01)00013-9
  • Cao J, Qi J, Song X, et al. Welding and joining of titanium aluminides. Materials. 2014;7(7):4930–4962. doi: 10.3390/ma7074930
  • Schuster JC. Critical data evaluation of the aluminium–nickel–titanium system intermetallics. Intermetallics. 2006;14(10–11):1304–1311. doi: 10.1016/j.intermet.2005.11.027
  • Adiabatic Temperature Calculator (ATC). programhttps://github.com/alexonemore/atc.
  • Biswas A, Roy SK, Gurumurthy KR, et al. A study of self-propagating high-temperature synthesis of NiAl in thermal explosion mode. Acta Materialia. 2002;50(4):757–773. doi: 10.1016/S1359-6454(01)00387-1
  • Zhu P, Li JCM, Liu CT. Adiabatic temperature of combustion synthesis of Al-Ni systems. Mater Sci Eng A. 2003;357(1–2):248–257. doi: 10.1016/S0921-5093(03)00249-1
  • Rogachev AS, Mukasyan AS. Combustion for materials synthesis. 1st. CRC Press; 2014; p. 424. doi: 10.1201/b17842
  • Noebe RD, Bowman RR, Nathal MV. Physical and mechanical properties of the B2 compound NiAl. International Materials Reviews. 1993;38(4):193–232. doi: 10.1179/imr.1993.38.4.193
  • Yi HC, Petric A, Moore JJ. Effect of heating rate on the combustion synthesis of Ti-Al intermetallic compounds. J Mater Sci. 1992;27(24):6796–6806. doi: 10.1007/BF01165971
  • Yi HC, Moore JJ. Combustion synthesis of TiNi intermetallic compounds. J Mater Sci. 1989;24(10):3456–3462. doi: 10.1007/BF02385724
  • Alimadadi H, Kjartansdóttir CK, Burrows A, et al. Nickel-aluminum diffusion: a study of evolution of microstructure and phase. Mater Charact. 2017;130:105–112. doi: 10.1016/j.matchar.2017.05.039
  • Mishin Y, Herzig C. Diffusion in the Ti–Al system. Acta Materialia. 2000;48(3):589–623. doi: 10.1016/S1359-6454(99)00400-0
  • Miedema AR, de Boer FR, Boom R. Model predictions for the enthalpy of formation of transition metal alloys. Calphad. 1977;1(4):341–359. doi: 10.1016/0364-5916(77)90011-6
  • Feng GJ, Li ZR, Feng SC, et al. Microstructure evolution and formation mechanism of laser-ignited SHS joining between Cf/al composites and TiAl alloys with ni–al–ti interlayer. Rare Met. 2017;36(9):746–752. doi: 10.1007/s12598-015-0542-1
  • Sytschev AE, Vadchenko SG, Boyarchenko OD, et al. SHS welding by thermal explosion: Ti-Ti and Ti-NiAl joints. Int J Self-Propag High-Temp Synth. 2013;22(2):99–102. doi: 10.3103/S106138621302009X
  • Gao B, Gu Y, Wu Q, et al. Diffusion research in BCC ti-al-ni ternary alloys. J Phase Equilib Diffus. 2017;38(4):502–508. doi: 10.1007/s11669-017-0544-9
  • Poletaev GM, Bebikhov YV, Semenov AS, et al. Self-diffusion in melts of Ni-Al and Ti-Al systems: molecular dynamics study. Lett Mater. 2021;11(4):438–441. doi: 10.22226/2410-3535-2021-4-438-441
  • Simões S, Filomena Viana F, Ko M, et al. Diffusion bonding of TiAl using reactive Ni/Al nanolayers and Ti and Ni foils. Materials Chemistry & Physics. 2011;128(1–2):202–207. doi: 10.1016/j.matchemphys.2011.02.059
  • Bartek W. Phase competition in ternary Ti–Ni–Al system. Physica A: statistical mechanics and its applications. Phys A Stat Mech Appli. 2016;454(C):110–116. doi: 10.1016/j.physa.2016.02.068
  • Mehrer H, Divinski SV. Diffusion in metallic elements and intermetallics. Defect Diffus Forum. 2009;289–292:15–38. doi: 10.4028/www.scientific.net/DDF.289-292.15
  • Loo van, F. J. J. Diffusion in the titanium-aluminium system. 1971. [PhD Thesis1 (Research TU/e/Graduation TU/e), Chemical Engineering and Chemistry]. Technische Hogeschool Eindhoven. doi: 10.6100/IR36207

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