首页> 外文会议>International Thermal Spray Conference and Exposition >Evolution of Microstructure and Wear Behavior of Heat-Treated and Fused Arc-Sprayed Coatings Containing Fe_2B Crystals Dispersed in Different Steel-Based Matrices
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Evolution of Microstructure and Wear Behavior of Heat-Treated and Fused Arc-Sprayed Coatings Containing Fe_2B Crystals Dispersed in Different Steel-Based Matrices

机译:含有Fe_2B晶体的热处理和熔弧喷涂涂层的微观结构和磨损行为的演变,分散在不同钢基基质中的Fe_2b晶体

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Thermally sprayed coatings are mechanically bonded to the substrate and present porosities and a lamellar microstructure that make them less attractive in applications requiring high coating toughness and impermeability to gas and liquids, these properties been obtained with more technically advanced overlaying processes.This paper presents the research work carried out to increase the erosion resistance of arc-sprayed coatings containing hard Fe_2B crystals dispersed in mild and alloyed steel-based matrices. These arc-sprayed coatings were a) heat-treated in furnace up to 1000°C and b) fused with an oxy-acetylene torch. The sprayed specimens were tested in a particle erosion device at the impact angles of 25° and 90°. The evolution of microstructure was done by SEM and wear damage by Time-Domain Optical Coherence Tomography.It was shown that both the heat treatment and fusing processes considerably enhanced the erosion resistance of coatings particularly at the impact angle of 90°. This increase in erosion resistance is attributed to the disappearance of stringers between sprayed lamellae. Liquid phase sintering is the mechanism responsible for the homogenization of arc-sprayed coatings containing Fe_2B. Grain growth observed in arc-sprayed coatings heat-treated up to 1000°C or fused with an oxyacetylene torch does not have a detrimental effect on erosion resistance.
机译:将热喷涂的涂层机械地粘合到基材上,并具有目前的孔隙率和层状微观结构,使它们在需要高涂层韧性和对气体和液体的不渗透性的应用中的吸引力不那么吸引,这些特性得到了更高级技术先进的叠加过程。本文提出了研究进行的工作以提高含有分散在温和和合金钢基基质中的硬Fe_2b晶体的弧喷涂涂层的腐蚀性。这些电弧喷涂涂层是A)在炉内热处理1000℃和B)与氧 - 乙炔炬融合。在25°和90°的冲击角下在颗粒腐蚀装置中测试喷涂的样品。通过SEM和磨损通过时域光学相干断层扫描来完成微观结构的演变。显示热处理和熔化过程均显着提高了涂层的腐蚀性,特别是在90°的冲击角度。这种侵蚀性的增加归因于喷涂薄片之间的桁条的消失。液相烧结是负责含Fe_2b的弧形喷涂涂层均质化的机制。在热处理1000℃或与氧乙炔炬融合的氨喷涂涂层中观察到的晶粒生长对耐腐蚀性有不利影响。

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