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首页> 外文期刊>Oxidation of Metals >Cyclic Oxidation and Hot Corrosion Behaviors of Gradient CoNiCrAlYSi Coatings Produced by HVOF and Diffusional Processes
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Cyclic Oxidation and Hot Corrosion Behaviors of Gradient CoNiCrAlYSi Coatings Produced by HVOF and Diffusional Processes

机译:HVOF和扩散过程制备的梯度CoNiCrAlYSi涂层的循环氧化和热腐蚀行为

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摘要

Conventional and gradient CoNiCrAlYSi coatings were produced using high-velocity oxy-fuel (HVOF) and an additional step of diffusional over aluminizing (pack cementation) techniques on the Inconel-738 substrate. Hot corrosion and cyclic oxidation performance of the conventional and the gradient coatings were investigated by exposing samples to a molten salt of Na2SO4-20 % wt. NaVO3 at 880 A degrees C and 1-h exposure at 1100 A degrees C in air. Corrosion and cyclic oxidation rates were determined by measuring the weight gain at regular time intervals. X-ray diffraction, field emission scanning electron microscopy, and electron probe microanalysis techniques were used to characterize the coatings and the thermally grown oxide. Increase in the amount of beta aluminum-rich phase and the formation of high-chromium layer beneath the outer aluminum-rich layer and the low surface roughness of gradient coating increased the hot corrosion and oxidation resistance by a factor of 1.7. In addition, the gradient coating showed better rehealing of the thermally formed alumina scale due to its possession of more beta phase as a Al reservoir.
机译:传统的和梯度的CoNiCrAlYSi涂层是使用高速含氧燃料(HVOF)以及在Inconel-738基材上进行渗铝(堆积渗碳)技术的附加步骤制成的。通过将样品暴露于Na2SO4-20%wt的熔融盐中,研究了常规涂层和梯度涂层的热腐蚀和循环氧化性能。 NaVO3在880 A的温度下暴露于1100 A的空气中1小时。腐蚀和循环氧化速率是通过以规则的时间间隔测量重量增加来确定的。 X射线衍射,场发射扫描电子显微镜和电子探针显微分析技术被用来表征涂层和热生长的氧化物。 β富铝相的数量增加以及在富铝外层下方形成高铬层以及梯度涂层的低表面粗糙度使热腐蚀和抗氧化性提高了1.7倍。另外,由于梯度涂层具有更多的作为Al储层的β相,因此梯度涂层显示出更好的热成型氧化铝鳞片修复效果。

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