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Effect of carbon on wettability and interface reaction between melt superalloy and ceramic material

机译:碳对熔体高温合金与陶瓷材料润湿性和界面反应的影响

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Effect of C on wettability and interface reaction between a nickel based superalloy and ceramic material was investigated by using a sessile drop method. It was found that the content of C in the alloy is able to influence the wettability and interface reaction. Alloys with C content lower than 0.1wt.% are stable on ceramic material and no interface reaction generates at the alloy-ceramic interface. However, when C content is higher than 0.1wt.%, the interface reaction occurs and the wetting angle decreases quickly. The product of interface reaction is discontinuous and composed of 9Al2O3 ⋅Cr2O3. Such result indicates that Cr in the alloy is impossible to react with the ceramic material and form Cr2O3 without the assistance of C. It is suggested that C in the alloy deoxidizes SiO2 in the ceramic material and produces SiO and CO. SiO is unstable and it can release active O atom at the interface. Cr at the interface combines with free O atom and forms Cr2O3. Al2O3 in the ceramic material and Cr2O3 finally forms 9Al2O3 ⋅Cr2O3.
机译:采用无滴法研究了C对镍基高温合金与陶瓷材料润湿性和界面反应的影响。发现合金中C的含量能够影响润湿性和界面反应。 C含量低于0.1wt。%的合金在陶瓷材料上是稳定的,并且在合金-陶瓷界面上不发生界面反应。然而,当C含量高于0.1wt。%时,发生界面反应并且润湿角迅速减小。界面反应的产物是不连续的,由9Al2O3·Cr2O3组成。该结果表明,合金中的Cr在没有C的帮助下不可能与陶瓷材料反应并形成Cr 2 O 3。这表明合金中的C使陶瓷材料中的SiO 2脱氧并产生SiO和CO。可以在界面处释放出活性的O原子。界面处的Cr与游离O原子结合形成Cr2O3。陶瓷材料中的Al2O3和Cr2O3最终形成9Al2O3⋅Cr2O3。

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