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首页> 外文期刊>Journal of the European Ceramic Society >Microstructure and high-temperature oxidation resistance of MoSi2-ZrO2 composite coatings for Niobium substrate
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Microstructure and high-temperature oxidation resistance of MoSi2-ZrO2 composite coatings for Niobium substrate

机译:铌基材MOSI2-ZRO2复合涂层的微观结构和高温氧化性

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摘要

Spent MoSi2 heating elements, which worked in the industrial electrical furnace at high temperature, were crushed into powders and reused as coating raw materials. ZrO2 was added into spent MoSi2 powders to fabricate MoSi2-ZrO2 coatings on niobium by spark plasma sintering, and the microstructure and oxidation behavior of the coatings at 1500 and 1700 degrees C were explored. The results showed that cracks exist in MoSi2 coating while ZrO2 containing coatings are crack-free with the formation of (Mo,Nb)(5)Si-3 diffusion layer after SPS, indicating good metallurgical bonding. After oxidation at 1500 degrees C for 20 h, the lowest mass gain is obtained by MoSi2-30ZrO(2) coating. SiO2 and ZrSiO4 are formed on the composite coatings at elevated temperature, which improves the high-temperature oxidation resistance. After oxidation at 1700 degrees C for 60 min, the oxide scale of MoSi2-30ZrO(2) coating is dense without any voids or cracks, demonstrating better high-temperature oxidation resistance than that of single MoSi2 coating.
机译:在工业电炉中高温工作的废MoSi2加热元件被粉碎成粉末,再用作涂料原料。在废MoSi2粉末中加入ZrO2,通过放电等离子烧结在铌上制备MoSi2-ZrO2涂层,并研究了涂层在1500和1700℃下的微观结构和氧化行为。结果表明,MoSi2涂层存在裂纹,而含ZrO2涂层无裂纹,SPS后形成(Mo,Nb)(5)Si-3扩散层,表明良好的冶金结合。在1500℃下氧化20小时后,MoSi2-30ZrO(2)涂层的质量增益最低。复合涂层在高温下形成SiO2和ZrSiO4,提高了涂层的高温抗氧化性。在1700℃下氧化60分钟后,MoSi2-30ZrO(2)涂层的氧化皮致密,没有空洞或裂纹,显示出比单一MoSi2涂层更好的高温抗氧化性。

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