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首页> 外文期刊>Surface & Coatings Technology >Effects of water vapor on high temperature oxidation of cryomilled NiCoCrAlY coatings in air and low-SO_2 environments
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Effects of water vapor on high temperature oxidation of cryomilled NiCoCrAlY coatings in air and low-SO_2 environments

机译:水蒸气对空气和低SO_2环境下低温研磨的NiCoCrAlY涂层高温氧化的影响

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摘要

Nanostructured NiCoCrAlY coatings were obtained through cryomilling and subsequent HVOF-spraying of the nanostructured powder onto copper substrates, followed by leaching of the Cu to obtain freestanding coatings. Oxidation tests in both air and an environment bearing 0.5% SO_2 with water vapor levels varying from 0 to 8% were conducted for 24 and 48h at 1000°C. It has been found that the oxides formed under all conditions are alumina followed by a spinel phase consisting primarily of cobalt aluminum oxide. In both air and the SO_2 environment an increase in total mass gain was seen up to 4% water vapor, followed by a decrease at 6 and 8%. This behavior is attributed to an extension of the transient oxidation stage, resulting first in a variation in scale thickness through increased spinel growth and second in a rise in internal oxidation caused by increased oxygen transport through the scale in the presence of water vapor. It would appear that above 4% water vapor the thickened spinel is able to compensate for alumina loss and create a diffusion barrier to internal oxidation, once again reducing mass gain.
机译:纳米结构的NiCoCrAlY涂层是通过冷冻研磨和随后的HVOF喷涂将纳米结构的粉末喷涂到铜基板上,然后浸出Cu以获得独立涂层而获得的。在空气和水含量为0%至8%的SO_2含量为0.5%的环境中,在1000°C下进行了24小时和48小时的氧化测试。已经发现在所有条件下形成的氧化物是氧化铝,随后是主要由钴氧化铝构成的尖晶石相。在空气和SO_2环境中,总质量增加均达到4%的水蒸气,然后分别下降6%和8%。这种现象归因于过渡氧化阶段的延长,首先是由于尖晶石生长的增加导致氧化皮厚度的变化,其次是由于在水蒸气存在下氧气通过氧化皮的迁移增加而引起的内部氧化的升高。看来,高于4%的水蒸气,增稠的尖晶石能够补偿氧化铝的损失,并形成内部氧化的扩散屏障,从而再次降低了质量增益。

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