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    Sc2O3改性YSZ陶瓷的热物理性能及耐CMAS腐蚀性能

    Thermophysical Properties and CMAS Corrosion Resistance of Sc2O3-Modified YSZ Ceramics

    • 摘要: 使用固相合成法制备了6%(物质的量分数,下同)Sc2O3改性2%Y2O3-ZrO2陶瓷(SYSZ陶瓷),研究了SYSZ陶瓷的1 400 ℃高温相稳定性、热物理性能以及在1 250 ℃下耐CMAS(CaO、MgO、Al2O3、SiO2、Fe2O3的质量比21∶7∶19∶42∶11)腐蚀性能,并与质量分数8%Y2O3-ZrO2陶瓷(YSZ陶瓷)进行对比。结果表明:在1 400 ℃下热处理500 h前后SYSZ陶瓷均为t四方相结构,未出现明显的m单斜相,而YSZ陶瓷中存在m相;Sc2O3的掺杂可有效提升YSZ陶瓷的高温相稳定性。SYSZ陶瓷的热导率随着温度升高先降低,在600 ℃附近达到最小值后缓慢升高;不同温度下SYSZ陶瓷的热导率均明显低于YSZ陶瓷,在1200 ℃下的热导率为1.79 W·m−1·K−1,相较于YSZ陶瓷降低约16%。随温度升高,SYSZ陶瓷的热膨胀系数呈近似线性增大趋势,略微低于YSZ陶瓷。在1 250 ℃的CMAS中腐蚀10 h后SYSZ陶瓷组织为排列紧密的棒状结构,与YSZ陶瓷相比,其表面形成的反应层厚度降低了85 %,相同腐蚀条件下反应层中的m相含量明显更低;SYSZ陶瓷表现出更佳的耐CMAS腐蚀性能。

       

      Abstract: The 6% (molar fraction, the same below) Sc2O3-modified 2%Y2O3-ZrO2 ceramics (SYSZ ceramics) was prepared by solid-phase synthesis method. The high-temperature phase stability at 1 400 ℃ and thermophysical properties of SYSZ ceramics, as well as the CMAS (mass ratio of CaO, MgO, Al2O3, SiO2 and Fe2O3 of 21∶7∶19∶42∶11) corrosion resistance at 1 250 ℃ were investigated and compared with those of 8wt%Y2O3-ZrO2 ceramics (YSZ ceramics). The results show that before and after heat treatment at 1 400 ℃ for 500 h, SYSZ ceramics all had a t-tetravalent phase structure, and no obvious m monoclonal phase appeared. However, the m phase existed in YSZ ceramics. The doping of Sc2O3 could effectively improve the high-temperature phase stability of YSZ ceramics. The thermal conductivity of SYSZ ceramics first decreased with the increase of temperature, reached the minimum value near 600 ℃, and then increased slowly. The thermal conductivity at different temperatures of SYSZ ceramics was significantly lower than that of YSZ ceramics. The thermal conductivity at 1 200 ℃ was 1.79 W·m−1·K−1, which was approximately 16% lower than that of YSZ ceramics. With the increase of temperature, the coefficient of thermal expansion of SYSZ ceramics showed an approximately linear increasing trend, slightly lower than that of YSZ ceramics. After being corroded in CMAS at 1 250 ℃ for 10 h, the surface of SYSZ ceramics presented a rod-like structure with a tight arrangement. Compared with those of YSZ ceramics, the thickness of the reaction layer formed on the surface of SYSZ ceramics was reduced by 85%, and the content of m phase in the reaction layer was significantly lower under the same condition. SYSZ ceramics showed better CMAS corrosion resistance.

       

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