Rangnath S,Vijayakumar M,Subrahmanyam J. Combustion-assisted synthesis of Ti-TiB-TiC composite via the casting route [J]. Mater Sci Eng A, 1992, 149: 253-257.
[2]
Takahashi Teruo. In situ synthesis of TiB whisker-reinforced titanium by mechanical alloying [J]. J Japan Inst Metals (in Japanese), 1995,59 ( 3): 244-250.
[3]
Wanjara P, Yue S, Drew R A L, et al. Titanium-based composites produced by powder metallurgy [J]. Key Eng Mater, 1997, 127-131: 415-422.
[4]
Abkowitz S, Abkowitz S M. Particulate-reinforced titanium alloy composites economically formed by combined cold and hot isostatic pressing [J]. Industrial Heating, 1993, 60(9): 32-37.
[5]
Lin Y, Zee R H, Chin A. In situ formation of three-dimensional TiC reinforcements in Ti-TiC [J]. Metall Trans, 1991, A22 ( 4): 859-865.
[6]
Jiang J Q, Lim T S, Kim Y J, et al. In situ formation of TiC- ( Ti-6Al-4V) composites [J]. Mater Sci Tech, 1996, 12 ( 4): 362-365.
[7]
Saito T, Takamiya H,Furuta T. Thermomechanical properties of P/M β titanium metal matrix composite [J]. Mater Sci Eng A, 1998, 243: 273-278.
[8]
Tsang H T, Chao C G, Ma C Y. Effects of volume fraction of reinforcement on tensile and creep properties of in situ TiB/TiMMC [J]. Scripta Metall Mater, 1997, 37 ( 9): 1359-1365.
[9]
Soboyejo W O, Lederich R J, Sastry S M L. Mechanical behavior of damage tolerant TiB whisker-reinforced in situ titanium matrix composites [J]. Acta Metall Mater, 1994, 42 (8): 2579-2591.
[10]
Dubey S, Lederich R J, Soboyejo W O. Fatigue and fracture of damage-tolerant in situ titanium matrix composites [J]. Metall Mater Trans A, 1997, 28 ( 10): 2037-2047.
[11]
Zhang X N, Lu W J, Zhang D, et al. In situ technique for synthesizing (TiB+TiC )/ Ti composites [J]. Scripta Metall Mater, 1999, 41 ( 1): 39-46.
[12]
Boyer R, Welsch G, Collings E W. Materials Properties Handbook: Titanium Alloys[M]. Materials Park, 1994. 130.