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Effects of Doping on Thermal Conductivity of Pyrochlore Oxides for Advanced Thermal Barrier Coatings

机译:掺杂对高级热障涂层中烧绿石氧化物导热系数的影响

摘要

Pyrochlore oxides of general composition, A2B2O7, where A is a 3(+) cation (La to Lu) and B is a 4(+) cation (Zr, Hf, Ti, etc.) have high melting point, relatively high coefficient of thermal expansion, and low thermal conductivity which make them suitable for applications as high-temperature thermal barrier coatings. The effect of doping at the A site on the thermal conductivity of a pyrochlore oxide La2Zr2O7, has been investigated. Oxide powders of various compositions La2Zr2O7, La(1.7)Gd(0.3)Zr2O7, La(1.7)Yb(0.3)Zr2O7 and La(1.7)Gd(0.15)Yb(0.15)Zr2O7 were synthesized by the citric acid sol-gel method. These powders were hot pressed into discs and used for thermal conductivity measurements using a steady-state laser heat flux test technique. The rare earth oxide doped pyrochlores La(1.7)Gd(0.3)Zr2O7, La(1.7)Yb(0.3)Zr2O7 and La(1.7)Gd(0.15)Yb(0.15)Zr2O7 had lower thermal conductivity than the un-doped La2Zr2O7. The Gd2O3 and Yb2O3 co-doped composition showed the lowest thermal conductivity.
机译:一般成分为A2B2O7的烧绿石氧化物,其中A为3(+)阳离子(从La到Lu),B为4(+)阳离子(Zr,Hf,Ti等),具有较高的熔点,相对较高的热膨胀性和低导热性使其适合用作高温热障涂层。已经研究了在A位点掺杂对烧绿石氧化物La2Zr2O7的热导率的影响。通过柠檬酸溶胶-凝胶法合成了各种组成的氧化物粉末La2Zr2O7,La(1.7)Gd(0.3)Zr2O7,La(1.7)Yb(0.3)Zr2O7和La(1.7)Gd(0.15)Yb(0.15)Zr2O7 。将这些粉末热压成圆盘,并使用稳态激光热通量测试技术进行热导率测量。掺杂稀土氧化物的烧绿石La(1.7)Gd(0.3)Zr2O7,La(1.7)Yb(0.3)Zr2O7和La(1.7)Gd(0.15)Yb(0.15)Zr2O7的热导率低于未掺杂的La2Zr2O7。 Gd2O3和Yb2O3共掺杂的组合物显示出最低的热导率。

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