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首页> 外文期刊>Journal of Materials Engineering and Performance >Hot Corrosion Performance of Plasma-Sprayed Multiwalled Carbon Nanotube-Al(2)O(3)Composite Coatings in a Coal-Fired Boiler at 900 degrees C
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Hot Corrosion Performance of Plasma-Sprayed Multiwalled Carbon Nanotube-Al(2)O(3)Composite Coatings in a Coal-Fired Boiler at 900 degrees C

机译:燃煤锅炉中等离子体喷涂多壁碳纳米管-A1(2)O(3)复合涂层的热腐蚀性,900℃

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摘要

The present study investigates the high-temperature corrosion behavior of plasma-coated boiler steel for 1000 h in a 110-MW water tube boiler, which had encountered severe corrosion and the tube failure. The coating was carried out by alumina and MWCNTs (multiwalled carbon nanotubes)-reinforced alumina composite powders. The uncoated and coated steel substrates were hung at a platen superheater at 900 degrees C. After the exposure, thermogravimetric analysis was carried out to evaluate the kinetics of corrosion. XRD, SEM, TEM and EDS analysis was carried out to evaluate the corrosion products at the end of the cyclic high-temperature corrosion. The present research work concludes that CNT-reinforced alumina coatings (4.0 wt.% CNT + Al(2)O(3)coating) have decreased the corrosion rate to 30.72 mpy, which was 113.53 mpy for conventional alumina coatings and 376.96 mpy for bare T11 boiler steel in the boiler environment. This manuscript submits the failure of tube at the platen superheater, exposure conditions and the analysis of the coated and uncoated samples of the steel tubes.
机译:本研究研究了110 mW水管锅炉中等离子体涂层锅炉1000小时的高温腐蚀行为,遇到了严重的腐蚀和管衰竭。涂层通过氧化铝和MWCNT(多壁碳纳米管)进行 - 强制氧化铝复合粉末进行。在曝光后,在900℃下,在压板过热器处悬挂在压板过热器中,进行热重分析以评估腐蚀的动力学。进行了XRD,SEM,TEM和EDS分析,以评估循环高温腐蚀结束时的腐蚀产品。目前的研究工作得出结论,CNT加固氧化铝涂层(4.0重量%CNT + Al(2)O(3)涂层)降低了腐蚀速率至30.72毫米,常规氧化铝涂料为113.53 mpy,裸露376.96 mpy T11锅炉钢在锅炉环境中。该手稿在压板过热器,暴露条件下表现出管道的失效,以及钢管涂层和未涂覆样品的分析。

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