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首页> 外文期刊>Journal of Thermal Spray Technology >High Weibull modulus HVOF titania coatings
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High Weibull modulus HVOF titania coatings

机译:高威布尔模量HVOF二氧化钛涂料

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摘要

The mechanical behavior of high-velocity oxyfuel (HVOF) sprayed titania (TiO{sub}2) coatings was evaluated using Vickers hardness measurements on the cross section and top surface. The distribution of hardness values for the cross-section and top surface under 25, 50, 100,300, 500, and 1000 g loads was analyzed via Weibull statistics. The coating microstructure was evaluated using scanning electron microscopy (SEM). It was observed that the microstructural features were similar in the top surface and cross-section, different from the lamellar structure commonly found in thermal spray coatings. X-ray diffraction (XRD) analysis identified rutile as the major coating phase. The in-flight sprayed particle parameters such as temperature and velocity were determined using a commercial diagnostic system based on pyrometry and time-of-flight measurements. The uniformity of the microstructure resulted in a near isotropic behavior of the mechanical properties, such as hardness, in the coating cross-section and top surface. High Weibull modulus values were observed when compared with results of other thermal spray coatings available in the literature. These initial results should contribute to a more general understanding of the conditions necessary to achieve coatings with high uniformity and assist in the engineering of coating microstructures for specific applications.
机译:使用维氏硬度测量在横截面和顶部表面上评估了高速含氧燃料(HVOF)喷涂的二氧化钛(TiO {sub} 2)涂层的机械性能。通过威布尔统计分析了在25、50、100、300、500和1000 g载荷下横截面和顶面的硬度值分布。使用扫描电子显微镜(SEM)评估涂层的微观结构。观察到,在顶部表面和横截面中的微观结构特征相似,不同于在热喷涂涂层中通常发现的层状结构。 X射线衍射(XRD)分析确定金红石为主要涂层相。使用基于高温测定法和飞行时间测量的商业诊断系统确定飞行中的喷雾颗粒参数(例如温度和速度)。微观结构的均匀性导致涂层横截面和顶表面的机械性能(如硬度)接近各向同性。与文献中提供的其他热喷涂涂层的结果相比,观察到高的威布尔模量值。这些初步结果应有助于对获得具有高均匀性的涂层所需条件的更一般的了解,并有助于为特定应用设计涂层微结构。

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