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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >High-Temperature Oxidation and Oxide Scale Formation in Plasma-Sprayed CoNiCrAlYRe Coatings
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High-Temperature Oxidation and Oxide Scale Formation in Plasma-Sprayed CoNiCrAlYRe Coatings

机译:等离子喷涂CoNiCrAlYRe涂层的高温氧化和氧化皮形成

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摘要

MCrAlY coatings are usually adopted to improve the environmental resistance of Ni-based superalloy components of turbine engines against high-temperature oxidation and hot corrosion. In this work, CoNiCrAlYRe coatings were produced by atmospheric plasma spraying. The coatings exhibited relatively low oxygen content and porosity. X-ray diffraction, scanning electron microscopy, and energy dispersive spectroscopy analyses revealed that the high-temperature exposure at 1383 K (1110 A degrees C) promoted the growth of an oxide scale on the top surface being composed of a continuous and dense Al2O3 inner layer followed by an outer mixed layer (Cr2O3 and spinels). The oxide scale was mainly composed of Al2O3, while the formation of mixed oxides occurred at lesser extent. After high-temperature exposure, the formation of internal oxides in some areas reduced the inter-lamellar cohesion, so that a decrease in microhardness was found.
机译:通常采用MCrAlY涂层来提高涡轮发动机的Ni基高温合金部件对高温氧化和热腐蚀的环境耐受性。在这项工作中,CoNiCrAlYRe涂层是通过大气等离子喷涂生产的。涂层表现出相对较低的氧含量和孔隙率。 X射线衍射,扫描电子显微镜和能量色散光谱分析表明,在1383 K(1110 A摄氏度)下的高温暴露促进了由连续且致密的Al2O3内层组成的顶表面氧化皮的生长。层之后是外部混合层(Cr2O3和尖晶石)。氧化物垢主要由Al2O3组成,而混合氧化物的形成则较少。高温暴露后,某些区域内氧化物的形成降低了层间的内聚力,从而发现显微硬度降低。

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