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OXIDATION BEHAVIOR OF SPUTTER DEPOSITED NANOCRYSTALLINE AND CONVENTIONAL PLASMA SPRAYED MCrAl(Y) COATINGS

机译:溅射沉积纳米晶和常规等离子体喷涂催化(Y)涂层的氧化行为

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The MCrAl-type coatings with, or without, yttrium are widely used for oxidation and/or hot corrosion protection of hot section components of gas turbine engines. Recently, there has been great interest in developing nano or microcrystalline coatings since these coatings offer excellent oxidation and corrosion resistance compared to the conventional coatings. Cyclic oxidation and microstructral degradation behavior of sputter deposited nanocrystalline Ni-20Cr-10Al coating has been investigated at 1010°C. The coating was deposited on Haynes 230 samples using a magnetron sputtering technique. This technique produced a coating with a grain size of ~9 nm. The cyclic oxidation results showed that the sputter deposited Ni-20Cr-10Al coating exhibited better oxidation resistance in terms of weight loss kinetics compared to the conventional plasma-sprayed NiCoCrAlY and PWA 286 coatings. The Al content in the nanocrystalline coating was consumed in a relatively short time due to inward and outward diffusion of Al. The accelerated consumption of Al was presumably due to enhanced grain boundary diffusion resulting from the ultra-fine grain structure in the coating. Variation of oxide-scale spallation resistance during thermal cycling, internal oxidation of the coatings, and the rate of Al consumption due to inward and outward diffusion of Al between the nanocrystalline and plasma sprayed coatings is presented.
机译:具有或不具有YTTRIUM的MCRAL型涂层广泛用于燃气涡轮发动机的热部分部件的氧化和/或热腐蚀保护。最近,对于开发纳米​​或微晶涂层,由于这些涂层与常规涂层相比提供了优异的氧化和耐腐蚀性,因此对开发纳米或微晶涂层具有很大的兴趣。在1010℃下研究了溅射沉积纳米晶体Ni-20Cr-10Al-10Al涂层的循环氧化和微观结构降解行为。使用磁控溅射技术沉积在Haynes 230样品上沉积涂层。该技术产生晶粒尺寸为〜9nm的涂层。环状氧化结果表明,与常规的等离子体喷涂的铌和PWA 286涂层相比,溅射沉积的Ni-20Cr-10Al-10Al涂层在减肥动力学方面表现出更好的抗氧化性。由于Al向内和向外扩散而在相对短的时间内消耗纳米晶涂层中的Al含量。 Al的加速消耗可能是由于涂层中的超细晶粒结构引起的晶界扩散增强。呈现了氧化术期间的氧化物级颗粒性,涂层内部氧化和纳米晶体喷涂涂层之间的向内和向外扩散引起的Al消耗的速率。

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