欢迎登录材料期刊网

材料期刊网

高级检索

用化学共沉淀法制备4.5%Y2O3-ZrO2(YSZ)和0.6%La2O3-YSZ、0.8%La2O3-YSZ、1.2%La2O3-YSZ(0.6La、0.8La、1.2La)(摩尔分数)纳米复合陶瓷粉末,研究了四组粉末的高温相稳定性.结果表明:采用正向滴淀方法制备的0.6La粉末(粒径~50 nm)团聚严重,而用反向滴淀方法制备的0.6La粉末(粒径~20 nm),粉末团聚少;各组前躯体粉末在600℃煅烧2 h后都呈单一四方相结构;在1200℃烧结100 h后0.6La、0.8La坯体呈单一四方相结构,无相变,YSZ和1.2La坯体都有立方相且1.2La坯体有锆酸镧相生成;在1300℃烧结100 h后0.6La,0.8La,1.2La坯体呈四方相和立方相结构,其中1.2La坯体有锆酸镧相生成,在相同条件下烧结的YSZ坯体有少量(~1.5%)单斜相产生;在1400℃烧结100 h后各组份中四方相已不能保持稳定,转化为单斜相和立方相,0.6La、0.8La、1.2La、YSZ坯体单斜相含量分别为30.5%,32%,35%,46.0%.在YSZ中添加少量La2O3在1300℃烧结能有效改善其高温相的稳定性.

参考文献

[1] M.Matsumoto,K.Aoyama,H.Matsubara,K.Takayama,T.Banno,Y.Kagiya,Y.Sugita,Thermal conductivity and phase stability of plasma sprayed ZrO2-Y2O3-La2O3coatings,Surface and Coating Technology,194,31(2005)
[2] M.Matsumoto,N.Yamaguchi,H.Matsubara,Low thermal conductivity and high temperature stability of ZrO2-Y2O3-La2O3 coatings produced by electron beam PVD,Scripta Materialia,50,867(2004)
[3] X.Huang,D.Wang,M.Lamontagne,C.Moreau,Experimental study of the thermal conductivity of metal oxides co-doped yttria stabilized zirconia,Materials Science and Engineering B,149,63(2008)
[4] F.M.Pitek,C.G.Levi,Opportunities for TBCs in the ZrO2-YO1.s-TaO2.5 system,Surface & Coatings Technology,201,6044(2007)
[5] R.L.Jones,R.F.Reidy,D.Mess,Scandia,yttria-stabilized zirconia for thermal barrier coatings,Surface and Coatings Technology,82,70(1996)
[6] M.N.Rahaman,J.R.Gross,R.E.Dutton,H.Wang,Phase stability,sintering,and thermal conductivity of plasmasprayed ZrO2-Gd2O3 compositions for potential thermal barrier coating applications,Acta Materialia,54,1615(2006)
[7] M.Matsumoto,H.Takayama,D.Yokoe,K.Mukai,H.Matsubara,Y.Kagiya,Y.Sugita,Thermalcycle behavior of plasma sprayed La2O3,Y2O3 stabilized ZrO2coatings,Scripta Materialia,50,2035(2006)
[8] H.Dai,X.Zhong,J.Li,Y.Zhang,J.Meng,X.Cao,Thermal stability of double-ceramic-layer thermal barrier coatings with various coating thicknes,Materials Science and Engineering A,433,1(2006)
[9] C.Viazzi,J.P.Bonino,F.Ansart,A.Barnabé,Structural study of metastable tetragonal YSZ powders produced via sol-gel route,Journal of Alloys and Compounds,452,377(2008)
[10] H.Chen,C.X.Ding,Nanostruetured zirconia coating prepared by atmospheric plasma spraying,Surface and Coatings Technology,150,31(2002)
[11] ZHOU Hong,LI Fei,HE Bo,WANG Jun,SUN Baode,Nanostructured yttria stabilized zirconia coatings deposited by air plasma spraying,Transactions of Nonferrous Metals Society of China,17,389(2007)
[12] ZHOU Hongming,YI Danqing,Research on preparation and thermophysical properties of Dy2Zr2O7 ceramic powder,Journal of Aeronautical Materials,28(1),65(2008)(周宏明,易丹青,热障涂层用Dy2Zr2O7陶瓷粉末制备及其热物理性能研究,航空材料学报,28(1),65(2008))
[13] Y.T.Moon,H.K.Park,D.K.Kim,C.H.Kim,I.S.Seog,Preparation of monodisperse and spherical zirconia powders by heating of alcohol-aqueous salt solution,Journal American Ceramic Society,78(10),2690(1995)
[14] Z.C.Michael,E.P.Andrew,H.B.Charls,Sol-gel and ultrafine particle formation via dielectric tuning of inorganic salt-alcohol-water solutions,Journal of Colloid and Interface Science,222(1),20(2000)
[15] J.Y.Choi,D.K.Kim,Preparation of monodisperse and spherical powders by heating of alcohol-aqueous salt solutions,Journal of Sol-Gel Science and Technology,15(3),231(1999)
[16] H.Chen,Y.Gao,Y.Liu,H.Luo,Coprecipitation synthesis and thermal conductivity of La2Zr2O7,Journal of Alloys and Compounds,480,843(2009)
[17] H.Yang,J.Ouyang,X.Zhang,N.Wang,C.Du,Synthesis and optical properties of yttria-doped ZrO2 nanopowders,Journal of Alloys and Compounds,458,474(2008)
[18] J.Sun,L.Gao,pH effect on titania-Phase transformation of precipitates from titanium tetrachloride solutions,Journal of American Ceramic Society,85(9),2382(2002)
[19] S.G.Chen,Y.S.Yin,D.P.Wang,J.Li,Reduced activation energy and crystalline size for yttria-stabilized zirconia nano-crystals:An experimental and theoretical study,Journal of Crystal Growth,267,100(2004)
[20] S.G.Chen,Y.S.Yin,D.P.Wang,Experimental and theoretical investigation on the correlation between aqueous precursors structure and crystalline phases of zirconia,Journal of Molecular Structure,690,181(2004)
[21] GE Rongde,ZHAO Tiancong,Computer simulation on the structure of colloidal aggregates formed during chemical precipitation,Journal of Central South Institute of Mining and Metallurgy,24(5),607(1993)(葛荣德,赵天从,化学沉淀过程中形成的胶粒团聚体结构的计算机模拟,中南矿冶学院学报,24(5),607(1993))
[22] M.Leoni,R.L.Jones,P.Scardi,Phase stability of scandiayttria-stabilized zirconia TBCs,Surface and Coatings Technology,108-109,107(1998)
[23] C.Viazzi,J.P.Bonino,F.Ansrat,A Barnabé,Structural study of metastable tetragonal YSZ powders produced via sol-gel route,Journal of Alloys and Compounds,452,377(2008)
[24] LIU Huaifei,LI Songlin,LI Qilian,LI Yongming,ZHOU Wuxi,Preparation and phase stability at high temperatures of La2O3,Y2O3 codoped ZrO2 ceramic poeder.,Jounal of Inorganic Materials,24(6),1(2009)(刘怀菲,李松林,李其连,李勇明,周伍喜,热障涂层用La2O3,Y2O3共掺杂ZrO2陶瓷粉末的制备及其相稳定性研究,无机材料学报,24(6),1(2009))
[25] X.Q.Cao,Application of rare earths in thermal barrier coating materials,Journal of Materials Science and Technology,23(1),15(2007)
[26] E.R.Andrievskaya,L.M.Lopato,Influence of composition on the T→M transformation in the systems ZrO2-Ln2O3(Ln=La,Nd,Sm,Eu),Journal of Materials Science,30,2591(1995)
[27] J.W.Jang,D.J.Kim,D.Y.Lee,Size effect oftrivalent oxides on low temperature phase stability of 2Y-TZP,Journal of Materials Science,36,5391(2001)
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%