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A method for assessing the volatility of oxides in high-temperature high-velocity water vapor

机译:一种评估高温高速水蒸气中氧化物挥发性的方法

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摘要

A steam-jet furnace was utilized to assess the volatility of SiO2, TiO2 and Y2O3 in a simulated turbine engine environment. Specimens were exposed in the steam-jet furnace at 1 atm H2O, steam temperatures of 1240-1300 degrees C, and gas velocities of 165-177 m/s. The jet of steam impinged on the specimen under study leading to surface recession via the formation of volatile hydroxide species. Linear volatilization kinetics were observed for SiO2. The measured recession rate of SiO2 was in reasonable agreement with the calculated recession rate based on assessed thermodynamic data for Si(OH)(4) (g). The measured recession rate of TiO2 in this study was considerably higher than the recession rate based on measured thermodynamic data for TiO(OH)(2) (g) and lower than prior experimental results. The measured recession rate of Y2O3 was in fair agreement with the calculated recession rate using estimated thermodynamic data for Y(OH)(3) (g) formation and was significantly lower than prior experimental results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用蒸汽喷射炉评估了模拟涡轮发动机环境中SiO2,TiO2和Y2O3的挥发性。样品在蒸汽喷射炉中于1 atm H2O,蒸汽温度为1240-1300摄氏度,气体速度为165-177 m / s的条件下暴露。蒸汽射流撞击在所研究的样品上,通过形成挥发性氢氧化物而导致表面退缩。观察到SiO 2的线性挥发动力学。 SiO2的测量的回缩速率与基于评估的Si(OH)(4)(g)的热力学数据计算的回缩速率在合理范围内一致。在这项研究中测得的TiO2退缩速率明显高于根据测得的TiO(OH)(2)(g)的热力学数据得出的退缩速率,但低于先前的实验结果。使用Y(OH)(3)(g)形成的估计热力学数据,测得的Y2O3衰退率与计算出的衰退率完全吻合,并且显着低于先前的实验结果。 (C)2015 Elsevier Ltd.保留所有权利。

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