欢迎登录材料期刊网

材料期刊网

高级检索

与传统陶瓷材料相比,纳米复合陶瓷材料断裂强度和断裂韧性得到了显著的提高.综述了纳米复合陶瓷材料强韧化机理的研究进展,主要包括弥散细化、混晶型结构强化、钉扎理论、残余应力场理论等.断裂模式从以传统复合陶瓷的以沿晶断裂为主转变为纳米复合陶瓷的以穿晶断裂为主,从而将导致断裂韧性和抗弯强度极大的提高.

参考文献

[1] 张立德;牟季美.纳米材料[M].沈阳:辽宁科学技术出版社,1994:293.
[2] 陈大明.纳米陶瓷复合材料进展[J].材料工程,1996(06):8.
[3] Niihara K .New design concept of structural ceramics-matrix nanocomposites[J].Journal of the Ceramic Society of Japan,1991,99(10):974.
[4] Nihara K;Nakahira A.Strengthening of oxide ceramics by SiC and Si3 N4/SiC dispersion[A].Westerville Ohio,1998:919.
[5] Nihara K;Nakahira A.Particulate strengthened oxide ceramic nanocomposties[A].Elsevier Applied Science,1991:637.
[6] 张艾飞;刘吉平 .纳米复合陶瓷制备工艺研究现状与发展前景[J].现代化工,2002,22(zk):62.
[7] Sekimo T;Niihara K .Microstructural characteristics and mechanical properties for Al2 O3 /metal nanocomposities[J].Nanostructured Materials,1995,6(5-8):663.
[8] Wang Lianjun;Jiang Wang;Chen Lidong .Frabrication and characterization of nano-SiC particles reinforced TiC/SiCnano composites[J].Materials Letters,2004,58:1401.
[9] Liu GJ.;Todd R.;Brook RJ.;Guo JK.;Qiu HB. .Processing and mechanical behavior of Al2O3/ZrO2 nanocomposites[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,1998(2):281-288.
[10] T. Venkateswaran;D. Sarkar;B. Basu .Tribological Properties of WC-ZrO_2 Nanocomposites[J].Journal of the American Ceramic Society,2005(3):691-697.
[11] Thompson AM.;Harmer MP.;Cook RF.;Chan HM. .CRACK HEALING AND STRESS RELAXATION IN AL2O3-SIC NANOCOMPOSITES[J].Journal of the American Ceramic Society,1995(3):567-571.
[12] 刘含莲,黄传真,秦惠芳,王随莲,孙静,邹斌,艾兴.纳米复合陶瓷材料的增韧补强机理研究进展[J].粉末冶金技术,2004(02):98-103.
[13] Niihara K;Nakahira A;Sekion T .New nanocomposite structural ceramics[J].Materials Research Society Symposium Proceedings,1992,286:405.
[14] Jeong Y K;Niihara K .Microstructure and mechanical properties of pressureless sintered Al2O3/SiC nanocomposites[J].Nano-Structured Materials,1997,9:193.
[15] Sekino T;Nakajima T;Niihara K .Mechanical and magnetic properties of nickel dispersed alumina-based nanocomposite[J].Materials Letters,1996,29:165.
[16] Chu M C;Sato S;Kobayashi Y et al.Study on strengthening of mullite by dispersion of carbide ceramics particles[J].Bull Japan Soc Mech Engng,1994,60:2829.
[17] Ando K;Takahashi K;Nakayama S et al.Crack-healing behavior of Si3 N4/SiC ceramics under cyclic stress and resultant fatigue strength at the healing temperature[J].Journal of the American Ceramic Society,2002,85:2268.
[18] Bamba N;Choa Y H;Niihara K .Fabrication and mechanical properties of nanosized SiC particulate reinforced yttria stabilized zirconia composites[J].Nano-Structured Materials,1997,9:497.
[19] Sung-Tag Oh;Jai-Sung Lee;Tohru Sekino .FABRICATION OF Cu DISPERSED Al_2O_3 NANOCOMPOSITES USING Al_2O_3/CuO AND Al_2O_3/Cu-NITRATE MIXTURES[J].Scripta materialia,2001(8-9):2117-2120.
[20] Lian Gao;Hongzhi Wang;Hirokazu Kawaoka et al.Fabrication of YAG-SiC nanocomposites by spark plasma sintering[J].Journal of the European Ceramic Society,2002,22:785.
[21] Andreas Rendtel .Silicon nitride/silicon carbide nanocomposite materials:Ⅱ hot strength,creep and oxidation resistance[J].Journal of the American Ceramic Society,1998,81(05):1109.
[22] Niihara K J .New design concept of structural ceramics-ceramic nanocomposites[J].Journal of the Ceramic Society of Japan,1989,99:974.
[23] Tatsuki Ohji .CREEP INHIBITION OF CERAMIC/CERAMIC NANOCOMPOSITES[J].Scripta materialia,2001(8-9):2083-2086.
[24] Tschernikova E.;Neumann A.;Boden G .Structural development and properties of Si_3N_4-SiC composites from amorphous Si-C-N powder precursors[J].Key engineering materials,1997(3):1993-1996.
[25] Sirirat Ratta Nachan;Yukio Miyashita;Yoshiharu Mutoh .Effect of polarization fracture toughness of BaTiO3/Al2O3composites[J].Journal of the European Ceramic Society,2004,24:775.
[26] Jiao S;Jenkins M L;Davidge R W .Interfacial fracture energy-mechanical behavior relationship in Al2O3/SiC and Al2O3/TiN nanocomposites[J].Acta Materialia,1997,45(01):149.
[27] 郭小龙;陈沙欧.纳米颗粒对陶瓷材料力学性能的影响[J].青岛大学学报(自然科学版),2000(02):60.
[28] Tatsuki Ohji;Young Keun Jeong;Yong Ho Choa et al.Strengthening and toughening mechanism of ceramic nanocomposites[J].Journal of the American Ceramic Society,1998,81(06):1453.
[29] 张巨先,高陇桥.晶内型结构的Al2O3/SiCp纳米复相陶瓷[J].硅酸盐学报,2001(05):471-474.
[30] 仝建峰,陈大明,陈宇航.纳米SiC-Al2O3/TiC多相陶瓷复合材料显微结构的研究[J].硅酸盐学报,2001(05):427-430.
[31] Tan Honglai;Yang Wei .Toughening mechanicsms nanocomposite ceramics[J].Mechanics of Materials,1998,30:111.
[32] 焦绥隆;Borsa C E .氧化铝/碳化硅纳米复合陶瓷的力学性能和强化机理[J].材料导报,1996,10(zk):89.
[33] Hideo Awaji;Seong Min Choi;Eisuke Yagi .Mechanisms of toughening and stringing in ceramic-based nanocomposites[J].Mechanics of Materials,2002,34:411.
[34] Martin Sternitzke .Review:structural ceramic nanocomposites[J].Journal of the European Ceramic Society,1997,17:1061.
[35] 王宏志,高濂,郭景坤.Al2O3-SiC纳米复合陶瓷中的残余应力分析[J].中国科学(E辑),1999(03):200-205.
[36] Saksing J .Internal stresses in ceramics[J].Journal of the American Ceramic Society,1961,44(08):1419.
[37] Levin I.;Brandon DG.;Kaplan WD. .EFFECT OF SIC SUBMICROMETER PARTICLE SIZE AND CONTENT ON FRACTURE TOUGHNESS OF ALUMINA-SIC NANOCOMPOSITES[J].Journal of the American Ceramic Society,1995(1):254-256.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%