欢迎登录材料期刊网

材料期刊网

高级检索

综述了国内外玻璃-氧化铝功能梯度材料的最新进展,详细总结和分析了国外该系材料的制备技术、组成、结构及性能以及国内通过湿法成形制备的材料的烧结行为及机理.国外主要通过渗滤和等离子喷涂2种方法制备该系材料,已经证明,该系材料弹性性能呈梯度变化,能有效抑制Hertzian锥形裂纹生成.与国外等离子喷涂方法制备的材料相比,湿法成形制备的材料不存在分层,无明显的界面问题.已经证明,氧化铝的含量对于该系材料的烧结行为有决定性影响,能够改变基体的烧结机理、抗收缩性能及裂纹扩展行为.最后,阐述了国内外的差距并展望了玻璃-氧化铝功能梯度材料的发展趋势.

参考文献

[1] Miyamoto Y;Kaysser W A;Rabin B H.Functionally graded materials.Design,processing and applications[M].MA,USA:Kluwer Academic Publishers,1999
[2] Kawasaki A;Watanabe R .Concept and P/M fabrication of functionally gradient materials[J].Ceramics International,1997,23(01):73.
[3] Xiao Jin-sheng,JIANG Bing,LIU Jie,HUANG Shi-yong.Microstructures and Mechanical Properties of Ceramic/Metal Gradient Thermal Barrier Coatings[J].武汉理工大学学报(材料科学版)英,2003(04):38-40.
[4] Beeker T L;Cannon R M;Ritchie R O .Statistical fracture modeling:Crack path and fracture criteria with application to homogeneous and functionally graded materials[J].Eng Pratt Mech,2002,69(14-16):1521.
[5] C.-E. ROUSSEAU;H. V. TIPPUR .Evaluation of crack tip fields and stress intensity factors in functionally graded elastic materials: Cracks parallel to elastic gradient[J].International Journal of Fracture,2002(1):87-111.
[6] Librescu L;Oh S Y;Song O .Thin-walled beams made of functionally graded materials and operating in a high temperature environment:Vibration and stability[J].Journal of Thermal Stresses,2005,28(6-7):649.
[7] Hirose Y;Che L;Gotob M.Estimation of thermal residual stresses in HA-glass functionally graded bio-coating[A].Lisbon,Portugal,2007:3480.
[8] 江红涛,王秀峰,于成龙.玻璃-氧化铝功能梯度材料的研究进展[J].中国陶瓷,2009(06):9-13.
[9] Jitcharoen J.;Giannakopoulos AE.;Suresh S.;Padture NP. .Hertzian-crack suppression in ceramics with elastic-modulus-graded surfaces[J].Journal of the American Ceramic Society,1998(9):2301-2308.
[10] S. SURESH;M. OLSSON;A. E. GlANNAKOPOULOS .ENGINEERING THE RESISTANCE TO SLIDING-CONTACT DAMAGE THROUGH CONTROLLED GRADIENTS IN ELASTIC PROPERTIES AT CONTACT SURFACES[J].Acta materialia,1999(14):3915-3926.
[11] Cannillo V;Manfredini T;Montorsi M et al.Experimental characterization and computational simulation of glass-alumina functionally graded surfaces[J].Materials Science Forum,2005,492-493:647.
[12] V. Cannillo;T. Manfredini;C. Siligardi .Glass-alumina functionally graded materials: their preparation and compositional profile evaluation[J].Journal of the European Ceramic Society,2006(13):2685-2693.
[13] V. Cannillo;T. Manfredini;C. Siligardi .Preparation and experimental characterization of glass-alumina functionally graded materials[J].Journal of the European Ceramic Society,2006(6):993-1001.
[14] V. Cannillo;L. Lusvarghi;C. Siligardi .Effects of different production techniques on glass-alumina functionally graded materials[J].Ceramics International,2008(7):1719-1727.
[15] Cannillo V;Manfredini T;Siligardi C et al.Glass-alumina functionally graded materials produced by plasma spraying[J].Key Engineering Materials,2007,333:227.
[16] Cannillo V;Lusvarghi L;Siligardi C et al.Characterization of glass-alumina functionally graded coatings obtained by plasma spraying[J].Journal of the European Ceramic Society,2007,27(04):1935.
[17] V. CANNILLO;T. MANFREDINI;M. MONTORSI .Microstructure-based modelling and experimental investigation of crack propagation in glass-alumina functionally graded materials[J].Journal of the European Ceramic Society,2006(15):3067-3073.
[18] V. Cannillo;M. Montorsi;C. Siligardi .Microscale computational simulation and experimental measurement of thermal residual stresses in glass-alumina functionally graded materials[J].Journal of the European Ceramic Society,2006(8):1411-1419.
[19] V. Cannillo;L. Lusvarghi;C. Siligardi .Prediction of the elastic properties profile in glass-alumina functionally graded materials[J].Journal of the European Ceramic Society,2007(6):2393-2400.
[20] Yu C L.Rapid fabrication and sintering properties of glass-alumina functionally graded materials[A].Beijing:Science Press USA,2006
[21] 王秀峰;于成龙;江红涛 等.一种陶瓷零件的快速制造方法[P].中国,ZL200510043174.7,2007-11-28.
[22] 于成龙 等.基于聚乙烯醇胶凝特性的金红石瓷无模成形技术[J].北京科技大学学报,2006,28(Suppl):100.
[23] 王秀峰;单联娟;江红涛 等.陶瓷零件的快速制备方法[P].中国,ZL200510043175.1,2007-09-05.
[24] Yu C L;Yang H;Zhao DC et al.Prediction of the sinte ring shrinkage of the glass-alumina functionally graded materials by a BP artificial neural network[J].Science Sinica,2009,41(03):257.
[25] Woolfrey J L;Bannister M J .Non isothermal techniques for stdying initial stage sintering[J].Journal of the American Ceramic Society,1972,55(08):390.
[26] Nikoli M V;Labus N;Risti M M .A phenomenological analysis of sintering kinetics from the viewpoint of activated volume[J].Science Sinica,2005,37(01):19.
[27] Yu C L;Wang X F;Tong X et al.Integrated liquid-pbase sintering of glass-alumina functionally graded materials[J].Scientia Sinica,2007,39(03):133.
[28] Jiang H T;Wang X F;Yu C L et al.Preparation of glassalumina functionally gradient materials by rapid prototyping technology[J].Key Engineering Materials,2008,368-372:1828.
[29] 江红涛,王秀峰,于成龙,魏金良,高廖楠.玻璃-氧化铝功能梯度材料显微结构的研究[J].中国陶瓷,2008(05):22-24,34.
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%