38
S. Gupta
44. Huang Z, Bonneville J, Zhai H, Gauthier-Brunet V, Dubois S (2014) Microstructural characterization and compression properties of TiC 0.61 /Cu(Al) composite synthesized from Cu and
Ti 3 AlC 2 powders. J Alloys Compd602:53–57
45. Li Q, Yuan X, Xu H, Song P, Lü K, Huang T, Li C, LuJ (2019) Microstructure and fracture
toughness of in-situ nanocomposite coating by thermal spraying of Ti 3 AlC 2 /Cu powder.Ceram
Int 45:13119–13126
46. Zhang Z, Zhai H, Zhou YC, Huang Z, Ai M (2008) Preparation of composites from Al and
Ti 3 AlC 2 and its tribo-chemistry reactions against low carbon steel. Key Eng Mater 368–
372:989–991
47. Wang WJ, Gauthier-Brunet V, Bei GP, Laplanche G, Bonneville J, Joulain A, Dubois S (2011)
Metallurgy processing and compressive properties of Ti 3 AlC 2 /Al composites. Mater Sci Eng
A530:168–173
48. Agne MT, Radovic M, Bentzel GW, Barsoum MW (2016) Stability of V 2 AlC with
Al in 800–1000 °C temperature range and in situ synthesis of V 2 AlC/Al composites.
JAlloysCompd666:279–286
49. Gupta S, Hammann T, Johnson R, Riyad MF (2014) Synthesis and characterization of novel
Al-matrix composites reinforced with Ti 3 SiC 2 particulates. J Mater Eng Perform24:1011–
1017
50. Hu L, O’Neil M, Erturun V, Benitez R, Proust G, Karaman I, Radovic M (2016) Highperformance metal/carbide composites with far-from equilibrium compositions and controlled
microstructures. Sci Rep6:35523. https://doi.org/10.1038/srep35523
51. Amini S, Ni C, Barsoum MW (2009) Processing, microstructural characterization and
mechanical properties of a Ti 2 AlC/nanocrystalline Mg-matrix composite. Compos Sci
Technol 69:414–420
52. Amini S, Barsoum MW (2010) On the effect of texture on the mechanical and damping
properties of nanocrystalline Mg-matrix composites reinforced with MAX phases. MaterSciEngA527:3707–3718
53. Anasori B, El’ad NC, Barsoum MW (2014) Fabrication and mechanical properties of pressureless melt infiltrated magnesium alloy composites reinforced with TiC and Ti 2 AlC particles.
MaterSciEngA618:511–522
54. Nelson M, Agne MT, Anasori B, Yang J, Barsoum MW (2017) Synthesis and characterization of the mechanical properties of Ti 3 SiC 2 /Mg and Cr 2 AlC/Mg alloy composites.
MaterSciEngA705(29):182–188
55. Gupta S, Filimonov D, Palanisamy T, El-Raghy T, Barsoum MW (2007) Ta 2 AlC and Cr 2 AlC
Ag-based composites: new solid lubricant materials for use over a wide temperature range
against Ni-based superalloys and alumina. Wear 262:1479–1489
56. Gupta S (2016) PhD thesis
57. Gupta S, AlAnazi F, Ghosh S, Dunnigan R (2017) Synthesis and tribological behavior of
novel Ag- and Bi-based composites reinforced with Ti 3 SiC 2 . Wear 376:1074–1083
58. Liu M, Chen J, Cui H, Sun X, Liu S, Xie M (2018) Ag/Ti 3 AlC 2 composites with high hardness,
high strength and high conductivity. MaterLett 213:269–273
59. Kothalkar A, Karaman I, Radovic M (2014) Fabrication and characterization of NiTi/Ti 3 SiC 2
and NiTi/Ti 2 AlC composites. J Alloys Compd610:635–644
60. Kothalkar AD, Benitez R, Hu L et al (2014) Thermo-mechanical response and damping
behavior of shape memory alloy–MAX phase composites. Metall Mater Trans A 45:2646.
https://doi.org/10.1007/s11661-014-2193-5
61. Zhai W, Shi X, Xu Z, Yao J, Song S, Xiao Y, Zhu Q, Chen L (2014) Effect of Ti 3 SiC 2 content
on tribological behavior of Ni 3 Al matrix self-lubricating composites from 25 to 800 °C. J
Mater Eng Perform 23:1374–1385
62. Fuka M, Dey M, GuptaS (2018) Novel ternary boride (MoAlB) particulates as solid lubricant
additives in Ni-matrix composites. In: Proceedings of the 2018 joint propulsion conference,
session: additive manufacturing for propulsion systems II, AIAA 2018-4893, Cincinnati, 9–11
July 2018. https://doi.org/10.2514/6.2018-4893
S. Gupta
44. Huang Z, Bonneville J, Zhai H, Gauthier-Brunet V, Dubois S (2014) Microstructural characterization and compression properties of TiC 0.61 /Cu(Al) composite synthesized from Cu and
Ti 3 AlC 2 powders. J Alloys Compd602:53–57
45. Li Q, Yuan X, Xu H, Song P, Lü K, Huang T, Li C, LuJ (2019) Microstructure and fracture
toughness of in-situ nanocomposite coating by thermal spraying of Ti 3 AlC 2 /Cu powder.Ceram
Int 45:13119–13126
46. Zhang Z, Zhai H, Zhou YC, Huang Z, Ai M (2008) Preparation of composites from Al and
Ti 3 AlC 2 and its tribo-chemistry reactions against low carbon steel. Key Eng Mater 368–
372:989–991
47. Wang WJ, Gauthier-Brunet V, Bei GP, Laplanche G, Bonneville J, Joulain A, Dubois S (2011)
Metallurgy processing and compressive properties of Ti 3 AlC 2 /Al composites. Mater Sci Eng
A530:168–173
48. Agne MT, Radovic M, Bentzel GW, Barsoum MW (2016) Stability of V 2 AlC with
Al in 800–1000 °C temperature range and in situ synthesis of V 2 AlC/Al composites.
JAlloysCompd666:279–286
49. Gupta S, Hammann T, Johnson R, Riyad MF (2014) Synthesis and characterization of novel
Al-matrix composites reinforced with Ti 3 SiC 2 particulates. J Mater Eng Perform24:1011–
1017
50. Hu L, O’Neil M, Erturun V, Benitez R, Proust G, Karaman I, Radovic M (2016) Highperformance metal/carbide composites with far-from equilibrium compositions and controlled
microstructures. Sci Rep6:35523. https://doi.org/10.1038/srep35523
51. Amini S, Ni C, Barsoum MW (2009) Processing, microstructural characterization and
mechanical properties of a Ti 2 AlC/nanocrystalline Mg-matrix composite. Compos Sci
Technol 69:414–420
52. Amini S, Barsoum MW (2010) On the effect of texture on the mechanical and damping
properties of nanocrystalline Mg-matrix composites reinforced with MAX phases. MaterSciEngA527:3707–3718
53. Anasori B, El’ad NC, Barsoum MW (2014) Fabrication and mechanical properties of pressureless melt infiltrated magnesium alloy composites reinforced with TiC and Ti 2 AlC particles.
MaterSciEngA618:511–522
54. Nelson M, Agne MT, Anasori B, Yang J, Barsoum MW (2017) Synthesis and characterization of the mechanical properties of Ti 3 SiC 2 /Mg and Cr 2 AlC/Mg alloy composites.
MaterSciEngA705(29):182–188
55. Gupta S, Filimonov D, Palanisamy T, El-Raghy T, Barsoum MW (2007) Ta 2 AlC and Cr 2 AlC
Ag-based composites: new solid lubricant materials for use over a wide temperature range
against Ni-based superalloys and alumina. Wear 262:1479–1489
56. Gupta S (2016) PhD thesis
57. Gupta S, AlAnazi F, Ghosh S, Dunnigan R (2017) Synthesis and tribological behavior of
novel Ag- and Bi-based composites reinforced with Ti 3 SiC 2 . Wear 376:1074–1083
58. Liu M, Chen J, Cui H, Sun X, Liu S, Xie M (2018) Ag/Ti 3 AlC 2 composites with high hardness,
high strength and high conductivity. MaterLett 213:269–273
59. Kothalkar A, Karaman I, Radovic M (2014) Fabrication and characterization of NiTi/Ti 3 SiC 2
and NiTi/Ti 2 AlC composites. J Alloys Compd610:635–644
60. Kothalkar AD, Benitez R, Hu L et al (2014) Thermo-mechanical response and damping
behavior of shape memory alloy–MAX phase composites. Metall Mater Trans A 45:2646.
https://doi.org/10.1007/s11661-014-2193-5
61. Zhai W, Shi X, Xu Z, Yao J, Song S, Xiao Y, Zhu Q, Chen L (2014) Effect of Ti 3 SiC 2 content
on tribological behavior of Ni 3 Al matrix self-lubricating composites from 25 to 800 °C. J
Mater Eng Perform 23:1374–1385
62. Fuka M, Dey M, GuptaS (2018) Novel ternary boride (MoAlB) particulates as solid lubricant
additives in Ni-matrix composites. In: Proceedings of the 2018 joint propulsion conference,
session: additive manufacturing for propulsion systems II, AIAA 2018-4893, Cincinnati, 9–11
July 2018. https://doi.org/10.2514/6.2018-4893
