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Nano-Hydroxyapatite Coatings on Titanium Substrates. Finite Element Analysis of Process and Experimental Plasma Thermal Sprayed Coatings

机译:钛基底上的纳米羟基磷灰石涂层。等离子热喷涂涂层的工艺和实验有限元分析

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The aim of this study was to create a nano-structured coating using Plasma Thermal Spraying (PTS). This process consists in introducing pre-agglomerated nanosized particles in a high-temperature and high-velocity gas jet and projected them onto the substrate to form, layer by layer, a nanostructured coating. In order to retain nanometer grain sizes in the deposited coating through specific PTS technologies, a thermal field and velocity distribution in the plasma jet are analytically calculated. A finite element analysis is employed to calculate the thermal field evolution inside the agglomerated particles and the thermal induced internal stress distribution is determined. The parameters determined by the theoretical analysis are used for experimental coatings. The average crystallite size of nano-hydroxyapatite powder was 90nm. After deposit via Plasma Thermal Spraying (PTS) process and followed by a 2 hours heat treatment to reduce amorphous fraction, the experimental deposited coating shows that it retains the nanometer crystallite sizes. The substructure of nanocrystals was evaluated at about 120nm in size. Such a nanocoating may play the role of nucleation site to bone, allowing a faster stabilization of the implant.
机译:这项研究的目的是使用等离子热喷涂(PTS)创建纳米结构涂层。该过程包括在高温和高速气体射流中引入预团聚的纳米级颗粒,然后将它们投射到基材上,一层又一层地形成纳米结构涂层。为了通过特定的PTS技术在沉积的涂层中保留纳米晶粒尺寸,需要对等离子流中的热场和速度分布进行解析计算。采用有限元分析来计算团聚颗粒内部的热场演化,并确定热引起的内部应力分布。通过理论分析确定的参数用于实验涂料。纳米羟基磷灰石粉末的平均微晶尺寸为90nm。通过等离子热喷涂(PTS)工艺进行沉积,然后进行2小时的热处理以减少无定形部分后,实验性沉积涂层显示其保留了纳米微晶尺寸。纳米晶体的亚结构被评估为约120nm的尺寸。这样的纳米涂层可以起到骨的成核位点的作用,从而允许植入物更快地稳定。

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