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Comparison of the oxidation behavior of a zirconium nitride coating in water vapor and air at high temperature

机译:高温水蒸气和空气中氮化锆涂层氧化行为的比较

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摘要

The oxidation behavior of zirconium nitride coating in high-temperature water vapor and air environments was studied. The parabolic rate constant of ZrN oxidizing in the water vapor environment at 600 degrees C was approximately 100 times faster than that in air, due to the larger pores and greater number of cracks that were formed across ZrO2 oxide layer formed during the water vapor oxidation process than during the air oxidation process. A bilayer-structure ZrO2 with tetragonal ZrO2 near the ZrN/ZrO2 interface and monoclinic ZrO2 approaching the outer ZrO2 surface were formed in both cases. The lateral cracks across the ZrO2 scale were caused by volume expansion from the tetragonal ZrO2 phase to the monoclinic ZrO2 phase transition.
机译:研究了氮化锆涂层在高温水蒸气和空气环境中的氧化行为。由于在水蒸气氧化过程中形成的ZrO2氧化物层上形成的更大的孔和更多的裂纹,ZrN在600摄氏度的水蒸气环境中氧化的抛物线速率常数比空气快约100倍。比空气氧化过程中在这两种情况下,都形成了双层结构的ZrO2,其中ZrN / ZrO2界面附近为四方ZrO2,单晶ZrO2接近ZrO2的外表面。 ZrO2氧化皮上的横向裂纹是由四方ZrO2相向单斜ZrO2相变的体积膨胀引起的。

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