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HVOF coatings for steam oxidation protection

机译:用于蒸汽氧化保护的HVOF涂料

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摘要

In the context of the European project 'Coatings for Supercritical Steam Cycles' (SUPERCOAT), the use of steam oxidation resistant coatings on currently available ferritic materials with high creep strength but poor oxidation resistance was investigated in order to allow increase in the operating temperature of steam power plants from 550 to 650℃. Among the explored coating techniques for this application, chosen on the basis of being potentially appropriate for coating steam turbine components, High Velocity Oxy Fuel (HVOF) thermal spray has resulted in one of the most successful techniques. Different alloyed materials such as FeCrAl, NiCrSiFeB, FeAl, NiCr and FeCr have been deposited, optimized and tested under flowing steam at 650℃ Characterization of as deposited and tested samples by metallography, SEM-EDS and XRD was carried out. Some of these coatings form protective pure chromium or aluminium oxides exhibiting excellent behaviour for at least 15 000 h of exposure, whereas others form less stable complex mixed oxides which nevertheless grow at considerably slower rates than the oxides formed on uncoated P92 (9 wt% Cr ferritic steel).
机译:在欧洲项目“超临界蒸汽循环涂料”(SUPERCOAT)的背景下,研究了在目前可用的蠕变强度高但抗氧化性较差的铁素体材料上使用抗蒸汽氧化涂层的方法,以允许提高其工作温度。 550至650℃的蒸汽发电厂。在针对该应用的探索性涂层技术中(基于可能适合涂覆蒸汽轮机部件的基础上进行选择),高速有氧燃料(HVOF)热喷涂技术已成为最成功的技术之一。在650℃的流动蒸汽中沉积,优化和测试了不同的合金材料,例如FeCrAl,NiCrSiFeB,FeAl,NiCr和FeCr。通过金相,SEM-EDS和XRD对沉积和测试的样品进行了表征。这些涂层中的一些形成了保护性的纯铬或氧化铝,在暴露至少15 000 h时表现出优异的性能,而其他涂层形成的稳定性较差的复合混合氧化物的生长速度却比未涂覆的P92(9 wt%Cr铁素体钢)。

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