3[1]Dimiduk D M. Gamma Tiannium Aluminide Alloys-an Assessment within the Competition of Aerospace Structural Materials[J]. Materials Science and Engineering A, 1999,263:281~288 被引量:1
4[4]Yamaguchi M, Inui H, Ito K. High-temperature Structural Intermetallics[J]. Acta Mater,2000,48:307~322 被引量:1
5[6]Kim Young Won. Microstructural Evolution and Mechanical Properties of a Forged Gamma Titanium Aluminide Alloy[J].Acta Metall Mater, 1992,40(6):1 121~1 134 被引量:1
6[8]Appel F, Wagner R.Microstructure and Deformation of Two Phase γ Titanium Aluminide[J].Materials Science and Engineering, 1998, 22:187~268 被引量:1
7[9]Kad Blmal K, Dao Ming, Asaro Robert J. Numerical Simulation of Plastic Deformation and Fracture Effects in Two Phase γ-TiAl+α2 Ti3Al Lamellar Microstructures[J].Phlosophical Magazine A, 1995, 71 (3): 567~604 被引量:1
8[10]Kad Blmal K, Dao Ming, Asaro Robert J. Numerical Simulations of Stress-strain Behaviour in Two-Phase α2+γLamellarTiAlAlloys [J]. Materials Science and Engineering A,1995, 192/193:97~103 被引量:1
9[11]Dimiduk Dennis M, Hazzledine Peter M, Parthasarathy Triplicane A et al. The Role of Grain Size and Selected Microstructure Parameters in Strengthening Fully Lamellar TiAl Alloys[J]. Metallurgical and Materials Transactions A,1998,29A:37~47 被引量:1
10[12]Schlogl Sabine M, Fischer Franz D. The Role of Slip and Twinned Crystals of TiAl: A Micromechanical Model[J].Phlosophical Magazine A, 1997,75(3): 621~636 被引量:1