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Microstructure of environmental barrier mullite and erbium silicate coatings on SiC-fiber bonded composites

机译:SiC-纤维粘结复合材料上的环保莫来石和硅酸涂层的微观结构

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SiC-composites are candidate structural materials for high temperature applications such as gas turbines. For this purpose, a suitable coating against high temperature oxidation is essential. The coating material selection was made by phase stability/durability under service environment, CTE matching, low elastic modulus and chemical compatibility with SiC. This work is to evaluate the microstructural quality of mullite and erbium silicate coatings on SiC fiber bonded composites. In this work, SiC-fiber bonded ID-composite (Tyrannohex™) by Ube Industries Ltd., were coated with mullite and erbium silicate by plasma spraying. The thickness of mullite and erbium silicate coatings was determined to be 120 microns and 220 microns, respectively. The fabricated samples were diamond polished for cross-sectional analyses by optical and scanning electron microscopy. The coating-substrate interfaces have been found bit undulating. The bonding between mullite and the substrate was found insufficient as compared to that observed in the erbium silicate coated substrate. The cross-sectional analyses of erbium silicate coating revealed the presence of through-thickness micro- and macro-cracks. The width of the macrocracks was found in the range of 1-3 microns. It is conceived that the evolution of large concentration of through-thickness-cracks is due to the stresses in the coating. The most probable sources of stresses are the precipitation of various second phases in the coating materials and the thermal expansion mismatches that arise during cooling. The mullite coating on the other hand is not found with macrocracks and on the whole the cohesion within the mullite coating is rather strong. The cross-sectional examination also revealed the irregularly distributed pores and cavities in both coating systems that are typical of thermal sprayed coatings. The surfaces of the coatings are characterized of typical lamellar microstructure formed by the flattened platelets of individual particles. The size of these droplets ranges from sub-micrometer to several micrometers.
机译:SiC复合材料是用于高温应用(例如燃气轮机)的候选结构材料。为此目的,合适的抗高温氧化涂层是必不可少的。涂料的选择是根据使用环境下的相稳定性/耐久性,CTE匹配度,低弹性模量以及与SiC的化学相容性来进行的。这项工作是为了评估SiC纤维粘结复合材料上的莫来石和硅酸涂层的微观结构质量。在这项工作中,Ube Industries Ltd.生产的SiC纤维粘结ID复合材料(Tyrannohex™)通过等离子喷涂涂覆了莫来石和硅酸。莫来石涂层和硅酸涂层的厚度分别确定为120微米和220微米。将制成的样品进行金刚石抛光,以通过光学和扫描电子显微镜进行横截面分析。已经发现涂层-基材界面起伏不平。与在硅酸涂覆的基底中观察到的相比,发现莫来石与基底之间的结合不足。硅酸涂层的横截面分析表明存在贯穿厚度的微裂纹和大裂纹。发现大裂纹的宽度在1-3微米的范围内。可以想到的是,大厚度裂纹的形成是由于涂层中的应力所致。应力最可能的来源是涂料中各种第二相的沉淀以及冷却过程中出现的热膨胀不匹配。另一方面,莫来石涂层没有大裂纹,并且总体上,莫来石涂层内的内聚力很强。横截面检查还揭示了两种涂层系统中不规则分布的孔和腔,这是热喷涂涂层的典型特征。涂层的表面具有典型的层状微结构,该结构由单个颗粒的扁平薄片形成。这些液滴的大小范围从亚微米到几微米。

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