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首页> 外文期刊>Key Engineering Materials >Fly ash cenospheres coatings by EPD-microwave sintering process for SiC corrosion resistance
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Fly ash cenospheres coatings by EPD-microwave sintering process for SiC corrosion resistance

机译:EPD-微波烧结法制备粉煤灰空心球涂层以提高SiC的耐蚀性

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摘要

Fly ash cenospheres coatings are a promising material in improving the oxidation and corrosion resistance of SiC. In this work, fly ash cenospheres coatings were deposited on SiC substrates by electrophoretic deposition process at 500 V during 30 seconds, 1, 2 and 3 minutes. These coatings were characterized by SEM to observe the surface morphology. The coatings were sintered at 1000, 1100 and 1200℃ during 3 hours by microwave heating. After sintering, the coatings were characterized by XRD. Cross sections of the substrate/coating samples were analyzed by SEM/EDS. The coatings with the best deposition and sintering conditions were evaluated by oxidation and hot corrosion resistance tests. The oxidation test was performed in air at temperatures from 1000 to 1300℃ during 100 hours. In addition, fly ash cenospheres coatings on SiC and uncoated SiC substrates were subjected to a hot corrosion test at 1000℃ during 100 hours in Na_2SO_4. The coatings showed good adhesion after sintering; the main phases of the coating were mullite and SiO_2. The uncoated substrates were found to gain weight due to the formation of SiO_2 at the surface. In contrast, SiC samples coated with fly ash cenospheres showed no weight gain and exhibited no signs of cracking or spallation following the oxidation tests. After the high temperature corrosion test in Na_2SO_4, the uncoated SiC showed signs of oxidation and corrosion while the coated remained unreacted in the presence of molten Na_2SO_4 indicating that the electrophoretic deposition fly ash cenospheres acted as a hot corrosion barrier for SiC substrates.
机译:粉煤灰空心球涂料是改善SiC的抗氧化性和抗腐蚀性的有前途的材料。在这项工作中,在30秒,1、2和3分钟内通过电泳沉积工艺在500 V下将粉煤灰空心球涂层沉积在SiC衬底上。通过SEM对这些涂层进行表征以观察表面形态。通过微波加热在3小时内在1000、1100和1200℃下烧结涂层。烧结后,通过XRD对涂层进行表征。通过SEM / EDS分析基材/涂层样品的横截面。具有最佳沉积和烧结条件的涂层通过氧化和抗热腐蚀测试进行了评估。氧化试验在空气中1000至1300℃的温度下进行100小时。此外,将SiC和未涂覆的SiC基底上的粉煤灰空心球涂层在Na_2SO_4中100小时内于1000℃下进行了热腐蚀测试。涂层在烧结后表现出良好的粘合性。涂层的主要相为莫来石和SiO_2。发现未涂覆的基材由于在表面形成了SiO_2而增加了重量。相比之下,用粉煤灰空心球包被的SiC样品在氧化测试后没有增加重量,也没有开裂或散裂的迹象。在Na_2SO_4中进行高温腐蚀测试后,未涂覆的SiC表现出氧化和腐蚀迹象,而在熔融的Na_2SO_4存在时未涂覆的SiC仍未反应,这表明电泳沉积飞灰空心球充当SiC衬底的热腐蚀屏障。

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