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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation, characterization and oxidation behavior of CeO2 -gradient NiCrAlY coatings applied by HVOF thermal spraying process
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Preparation, characterization and oxidation behavior of CeO2 -gradient NiCrAlY coatings applied by HVOF thermal spraying process

机译:HVOF热喷涂工艺施加CEO2 -Gradient镍钛涂层的制备,表征和氧化行为

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Conventional and CeO2-gradient NiCrAlY coatings (0.5-2.0 wt% of nano-CeO2 from the inner layer to layers adjacent to the outer surface) were produced by the high-velocity oxy-fuel spraying (HVOF) process. Microstructural characteristics, phases analysis and high-temperature oxidation behavior of the functionally graded (FG) NiCrAlY/nano-CeO2 coatings were investigated and compared with those monolayer (ML) NiCrAlY coatings with without CeO2 nanoparticles. The microstructure of the ML- and FG-coatings, as well as processed powders, were characterized using a transmission electron microscope (TEM), field emission scanning electron microscope (FESEM), energy-dispersive X-ray spectroscopy (EDS), X-ray diffraction analysis (XRD), micro-hardness testing and Raman spectroscopy. On account of the calculation of oxidation behavior of the coating, the ML- and FG-coatings were exposed to laboratory's air at 1000 degrees C up to 100 h (short-term exposure) and 5000 h (long-term exposure) and moreover, the weight gain versus oxidation time and oxide growth rate were subsequently examined. Obtained results indicated that FG-NiCrAlY/nano-CeO2 coating had a better oxidation resistance as well as a lower oxide growth rate compared to the rest of the ML-coatings. In addition, increasing oxidation resistance of FG-NiCrAlY/nano-CeO(2 )coating can be attributed by controlling Al and O diffusion due to the formation of relatively thin, dense, and sticky Al2O3 oxide scale. Besides, all cases of the oxidized ML- and FG-coatings had a parabolic rate behavior owing to their diffusion-controlled oxidation under short- and long-term oxidation tests.
机译:通过高速氧 - 燃料喷涂(HVOF)工艺制备常规和CEO2梯度的凝胶(0.5-2.0wt%的来自与外表面相邻的层相邻的层)。研究了功能梯度(FG)Nicraly /纳米CeO2涂层的微观结构特征,相分析和高温氧化行为,与没有CeO2纳米颗粒的单层(mL)幼亮涂层进行比较。使用透射电子显微镜(TEM),场发射扫描电子显微镜(FESEM),能量分散X射线光谱(EDS),X-表征ML-和FG涂层的微观结构以及加工粉末,以及加工粉末。射线衍射分析(XRD),微硬度测试和拉曼光谱。由于涂层的氧化行为的计算,将ML和FG涂层以1000℃(短期曝光)和5000小时(长期暴露)暴露于实验室的空气,并且(长期暴露),随后研究了体重增加与氧化时间和氧化物生长速率。得到的结果表明,与其他ML涂层相比,FG-Nicraly /纳米CeO2涂层具有更好的氧化性和较低的氧化物生长速率。此外,由于形成相对薄,致密的和粘性的Al2O3氧化物量表,可以通过控制Al和O扩散来增加FG-Nicraly /纳米CeO-CeO(2)涂层的抗氧化性。此外,由于在短期和长期氧化试验下,由于其扩散控制的氧化,所有氧化ML和FG涂层的含量均具有抛物速度行为。

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