1[1]Groza J R, Subhash H R, Kazuo Y. Plasma activated sintering of addtive-free AlN powder to near-theoretical density[J]. J Mater Res, 1992, 7(10): 2643-2645. 被引量:1
2[2]Takeuchi T, Takeda Y, Funahashi R. Rapid preparation of dense (La0.9Sr0.1)CrO3 ceramics by spark-plasma sintering[J]. J Electrochemical Soc, 2000, 147(11): 3979-3982. 被引量:1
3[3]Nishimura T, Mitomo M, Hirotsuru H. Fabrication of silicon nitride nano-ceramics by spark plasma sintering[J]. J Mater Sci Lett, 1995, 14(15): 1046-1047. 被引量:1
4[4]Akira K. Observation of sample sintering temperature by the plasma activated sintering(PAS)furnace[J]. J Mater Sci Lett, 1998, 17(1): 49-51. 被引量:1
5[7]Wang Y C, Fu Z Y. Study of temperature field in spark plasma sintering[J]. Materials Science and Engineering B, 2002, 90(1): 34-37. 被引量:1
6[12]Hong J S, Gao L, Torre SDDL, et al. Spark plasma sintering and mechanical properties of ZrO2(Y2O3)-Al2O3 composites[J]. Mater Lett, 2000, 43: 27-31. 被引量:1
7[13]Li W, Cao L. Rapid sintering of nanocrystalline ZrO2(3Y) by spark plasma sintering[J]. J Euro Cer Soci, 2000, 20(1415): 2441-2445. 被引量:1
8[15]Joanna R G. Consolidation of atomized NiAl powders by plasma activated sintering process[J]. Scri Metall Mater, 1994, 30(1): 47-52. 被引量:1
9[16]Hensley J E, Risbud S H Jr, Groza J R, et al. Plasma-activated sintering of aluminum nitride[J]. J Mate Eng Per, 1993, 2(5): 665-669. 被引量:1
10[17]Risbud S H, Shan C H, Mukherjee A K, et al. Retention of nanostructure in aluminum oxide by very rapid sintering at 1150℃[J]. J Mater Res. 1995, 10(2): 237-239. 被引量:1