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首页> 外文期刊>Journal of Thermal Spray Technology >High-Velocity Suspension Flame Sprayed (HVSFS) Hydroxyapatite Coatings for Biomedical Applications
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High-Velocity Suspension Flame Sprayed (HVSFS) Hydroxyapatite Coatings for Biomedical Applications

机译:用于生物医学应用的高速悬浮火焰喷涂(HVSFS)羟基磷灰石涂层

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摘要

In this study, hydroxyapatite (HAp) coatings were deposited on Ti plates by the high-velocity suspension flame spraying (HVSFS) technique. The process characteristic, the microstructure and phase composition of the coatings are significantly influenced by the solvent and by the design of the combustion chamber (CC) of the HVSFS torch. Water-based suspensions always lead to fairly low surface temperatures (≈350 °C), deposition efficiencies <40%, and produce coatings with low amount of crystalline HAp, which tend to dissolve very rapidly in simulated body fluid (SBF) solutions. DEG-based suspensions, when sprayed with properly-designed CCs, produce deposition efficiencies of 45-55% and high surface temperatures (550-600 °C). In these coatings, the degree of crystallinity increases from the bottom layer to the top layer, probably because the increasingly large surface temperature can eventually favour re-crystallisation of individual lamellae during cooling. These coatings are much more stable in SBF solutions.
机译:在这项研究中,通过高速悬浮火焰喷涂(HVSFS)技术将羟基磷灰石(HAp)涂层沉积在Ti板上。涂层的工艺特性,微观结构和相组成受溶剂和HVSFS炬管燃烧室(CC)设计的影响很大。水基悬浮液总是导致相当低的表面温度(≈350°C),沉积效率<40%,并产生具有少量结晶HAp的涂层,这些HAp往往在模拟体液(SBF)溶液中迅速溶解。基于DEG的悬浮液在喷涂适当设计的CC时可产生45-55%的沉积效率和较高的表面温度(550-600°C)。在这些涂层中,结晶度从底层到顶层增加,这可能是因为越来越大的表面温度最终会在冷却过程中有利于单个薄片的重结晶。这些涂层在SBF溶液中更加稳定。

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