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首页> 外文期刊>Composites. Part A >Fabrication of functionally-graded yttria-stabilized zirconia coatings by 355 nm picosecond dual-beam pulsed laser deposition
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Fabrication of functionally-graded yttria-stabilized zirconia coatings by 355 nm picosecond dual-beam pulsed laser deposition

机译:355 nm皮秒双光束脉冲激光沉积制备功能梯度的氧化钇稳定的氧化锆涂层

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摘要

This article presents the design, fabrication, and characterization of functionally-graded yttria-stabilized zirconia (YSZ) coatings by using a novel dual-beam pulsed laser deposition method based on a 355 nm ps laser. Graded coatings were fabricated by mixing YSZ and the substrate material (stainless steel). The two materials were ablated and deposited on a substrate inside a vacuum chamber, in a way that the mixture composition gradually changes from stainless steel to YSZ, along the coating's growth direction, following a predesigned linear composition profile. The Rockwell indentation method was employed for the adhesion strength analysis based on the interfacial crack radius (c) and indentation load (P). When a load P is applied on the sample surface, a crack with a radius c will be formed. Hence, by using more than one loads and measuring the generated crack diameters, dP/dc can be estimated, which is considered as a critical parameter and is proportional to the coating's adhesion strength. The graded coating was found to provide improved adhesion strength (dP/dc = 9.41 N/pm) over pure YSZ coatings (dP/dc = 8.35 N/pm and 8.43 N/pm). In this study, the thermal barrier effects of the coatings were examined by measuring the thermal conductivity values of the coatings using a high-power multi-mode fiber laser as an impulsive heat source and an infrared camera, and the deposited YSZ coatings showed a low thermal conductivity (1.14 W/mK).
机译:本文通过使用基于355 nm ps激光的新型双光束脉冲激光沉积方法,介绍了功能渐变的氧化钇稳定的氧化锆(YSZ)涂层的设计,制造和表征。通过混合YSZ和基底材料(不锈钢)来制造渐变涂层。将这两种材料烧蚀并沉积在真空室内的基板上,使混合物的成分遵循预定的线性成分分布,沿着涂层的生长方向从不锈钢逐渐变为YSZ。基于界面裂纹半径(c)和压痕载荷(P),采用洛氏压痕法进行粘结强度分析。当在样品表面上施加载荷P时,将形成半径为c的裂纹。因此,通过使用一个以上的载荷并测量产生的裂纹直径,可以估算dP / dc,它被认为是一个关键参数,与涂层的附着强度成正比。发现该梯度涂层与纯YSZ涂层(dP / dc = 8.35 N / pm和8.43 N / pm)相比,具有更高的粘合强度(dP / dc = 9.41 N / pm)。在这项研究中,通过使用高功率多模光纤激光器作为脉冲热源和红外热像仪测量涂层的热导率值来检查涂层的热障效应,并且沉积的YSZ涂层显示出低的热导率。导热系数(1.14 W / mK)。

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