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用HREM研究β-NiAl-La_2O_3复合涂层氧化机制
彭晓
学位类型硕士
导师李铁藩
1992
学位授予单位中国科学院金属腐蚀与防护研究所
学位授予地点中国科学院金属腐蚀与防护研究所
摘要本文首次用HREM,结合SEM/EDAX等实验手段对弥散稀土氧化物La_2O_3质点的β-NiAl-La_2O_3复合涂层的氧化机制进行了初步研究。复合涂层是用Ni-La_2O_3复合镀然后扩散渗Al的方法制备的。同单镀Ni渗Al涂层比较,复合涂层具有更慢的氧化增重速率。用SEM观测氧化层表面形貌,发现复合涂层氧化层表面为细小密集的氧化物晶体,简单NiAl涂层氧化层表面出现大量长有晶须的块状氧化物。HREM的研究进一步表明,复合涂层的β-NiAl相表层及界面处含有细小的La_2O_3质点。在1273K氧化25hrs后,弥散或聚集的La_2O_3颗粒(直径10~50nm)掺入α-Al_2O_3氧化层中。α-Al_2O_3氧化层/β-NiAl涂层基体界面有一层中间过渡相。认为氧化物的生长机制与其显微结构有着紧密联系。氧化过程中,涂层内纳米级的La_2O_3质点可以通过一定方式向氧化层/涂层内界面迁移富集。大量纳米级的La_2O_3质点“嵌”入氧化层中,可以阴挡氧化膜中离子的传质过程,从而降低涂层的氧化增重速率,改善膜的粘附性。中间过渡层有助于增强α-Al_2O_3与β-NiAl相间的界面稳定性,并就这些解释作了详尽论证。
其他摘要The fine structure of Ni-La_2O_3 electrodeposited composite + aluminum diffusional coating on M38 superalloy was studied by high resolution electron micrography (HREM) observation firstly after oxidation at 1273K for 25hrs. The tiny La_2O_3 particles distributed in the grain boundary of β-NiAl coating prior to oxidation. After oxidation, the dispersived or agglomerated La_2O_3 particles (10~50nm in diameter) was incorporated into Al_2O_3 scale/β-NiAl coating matrix interface. Moreover, compared to the Ni-plating and aluminizing coating, β-NiAl coating with La_2O_3 dispersoids has a slower scale-thinken rate. SEM images showed that there was an obvious difference in surficial morphology of oxide scale between the coatings with and without La_2O_3 particles. The former surface distributed dense and small oxide grains, and the latter had oxide blocks with winskers. It is belived that the growth mechanism of the scale has a strong relationship with its microstructure. During the oxidation process of β-NiAl-La_2O_3 composite coating. La_2O_3 particles (<50nm in diameter) in NiAl phases can migrate to the interface between the scale and the coating and resulted in a rapid increase in quantity of these tiny particles there. An amount of the above-mentioned La_2O_3 dispersoids inserted into Al_2O_3 scales may inhibit the diffusion of major ionic species in the scales, which is benifical to reduce the growth rate of the scale and modify the scale adhension. The intermediate may help to increase the interfacial stability. The detailed discussion was given about these explanations above.
页数42
语种中文
文献类型学位论文
条目标识符http://ir.imr.ac.cn/handle/321006/17576
专题中国科学院金属研究所
推荐引用方式
GB/T 7714
彭晓. 用HREM研究β-NiAl-La_2O_3复合涂层氧化机制[D]. 中国科学院金属腐蚀与防护研究所. 中国科学院金属腐蚀与防护研究所,1992.
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