欢迎登录材料期刊网

材料期刊网

高级检索

Sm2(Zr1-xCex)2O7 (x = 0.1, 0.2, and 0.3) ceramics were prepared by solid reaction method at 1600~C for 10 h using Sm2O3, ZrO2, and CeO2as starting reactants. The phase compositions, microstructures, thermal expansion coefficients, and partial thermal conductivities of these materials were investigated. X-ray diffraction (XRD) results reveal that Sm2(Zr0.gCe0.t~zO7 with pyrochiore structure and Sm2(Zr1-xCex)2O7 (x = 0.2 and 0.3) with fluorite structure were synthesized, and scanning electrical microscopy (SEM) images show that the microstructures of these products are very dense. The linear thermal expansion coefficients increase with increasing temperature in the temperature range from ambient to 1200℃, and the thermal expansion coefficients increase with increasing content of doped CeO2. The thermal conductivities of Sm2(Zr0.8Ce0.2)2O7 and Sm2(Zr0.7Ce0.3)2O7 decrease gradually with an increase in temperature. These results show that the synthesized ceramic materials can be explored as novel prospective candidate materials for use in new thermal barrier coating systems in the future.

参考文献

[1] Beele W;Marijnissen G;Lieshout V A .The evolution of thermal barrier coatings-status and upcoming solutions for today's key issues[J].Surface and Coatings Technology,1999,120-121:61.
[2] Padture NP;Gell M;Jordan EH .Materials science - Thermal barrier coatings for gas-turbine engine apptications [Review][J].Science,2002(5566):280-284.
[3] Cao X Q;Vassen R;Stoever D .Ceramics materials for thermal barrier coatings[J].Journal of the European Ceramic Society,2004,24:1.
[4] Clarke DR. .Materials selection guidelines for low thermal conductivity thermal barrier coatings[J].Surface & Coatings Technology,2003(0):67-74.
[5] Yamanaka S;Maekawa T;Muta H;Matsuda T .Thermal and mechanical properties of SrHfO3[J].Journal of Alloys and Compounds,2004,381:295.
[6] Kurosaki K;Tanaka T;Maekawa T;Yamanaka S .Thermophysical properties of SrY2O4[J].Journal of Alloys and Compounds,2005,398:304.
[7] Pan W;Xu Q;Wang J D;Hao C.L,Miao H.Z,Mori K Torigoe T .Novel low thermal conductivity ceramic materials for thermal barrier coatings[J].Key Engineering Materials,2005,280-283:1497.
[8] Song H S;Qiang X;Chi F W;Ling L .Analysis of Sm2Zr2O7 forming mechanism by X-ray diffraction[J].J Rare Met Mater Eng,2007,8(36):533.
[9] Song Z H;Qiang X;Chi F W;Ling L .Thermal conductivity of (La0.5Sm0.5)2(Zr0.9Ce0.12O7 ceramic for thermal barrier coatings[J].Key Engineering Materials,2008,368-372:1331.
[10] Qiang X;Wei P;Dong J W;Hao Q.L,Zhuo M.H,Kazutaka M Torigoe T .Preparation and thermophysical properties of Dy2Zr2O7 ceramic for thermal barrier coatings[J].Materials Letters,2005,59:2804.
[11] Jindrich L;Pavel C;David S;Ales S Petr A .Estimation of heat capacities of solid mixed oxides[J].Thermochimica Acta,2003,359:27.
[12] Spencer PJ. .Estimation of thermodynamic data for metallurgical applications[J].Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems,1998(1/2):1-21.
[13] Song H Z;Qiang X;Chi F W;Ling L .Effect of vacancy on thermal expansion coefficient of Sm2Zr2O7 ceramic[J].J Rare Met Mater Eng,2007,8(36):541.
[14] Xueqiang Cao;Robert Vassen;Werner Fischer;Frank Tietz;Wolfgang Jungen;Detlev Stover .Lanthanum-Cerium Oxide as a Thermal Barrier-Coating Material for High-Temperature Applications[J].Advanced Materials,2003(17):1438-1442.
[15] Subramanian M A;Aravamudan G;Rao G V S .Oxides pyrochlores-a review[J].Progress in Solid State Chemistry,1983,15:55.
[16] Patwe SJ;Ambekar B R;Tyagi A K .Synthesis,characterization and lattice thermal expansion of some compounds in the system Gd2CexZr2-xO7[J].Journal of Alloys and Compounds,2005,389:243.
[17] Scheetz B E;White W B .Characterization of anion disorder in zirconate A2B2O7 compounds by Raman spectroscopy[J].J Am Cerara Soc,1979,62(9-10):468.
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%