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PLASMA SPRAY DEPOSITION OF HYDROXYAPATITE COATINGS FROM SOL PRECURSORS

机译:溶胶前体的等离子喷涂羟基磷灰石涂层

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摘要

Plasma spray deposition of hydroxyapatite (HA) coatings is a well established commercial process. When deposited on metallic substrates, these coatings have been shown to promote bone fixation and osteconductivity. A concern with current coatings is the formation of relatively large debris particles during resorption. The size of the debris is related to the particle size of the powder injected into the plasma during the deposition process. The use of solution precursors or dispersions of fine particle size powders as the feedstock for plasma spraying has been shown to produce submicronanocrystalline structured coatings from relatively inexpensive precursors. Nanocrystalline HA coatings may improve the resorption of the coating in the body, avoiding the irritant effect of large particles which may be seen in current thermal sprayed HA coatings. We have explored the use of sols prepared from several different precursors as the feedstock for the plasma spray deposition of HA coatings on Ti6A14V substrates, employing statistical design of experiments to establish optimal deposition conditions. We report on the formation and the characteristics of the coatings as a function of the deposition parameters. The presence of different Ca-P crystalline and amorphous phases was assessed by X-ray diffraction analysis. The coating microstructure was characterized by scanning/transmission electron microscopy. The suitability of the technique to coat biomedical implants is discussed.
机译:等离子喷涂羟基磷灰石(HA)涂层是一种成熟的商业方法。当沉积在金属基底上时,这些涂层已显示出促进骨固定和骨传导性。当前涂层所关注的是在吸收过程中形成相对较大的碎屑颗粒。碎片的大小与沉积过程中注入到等离子体中的粉末的颗粒大小有关。已经证明使用溶液前体或细粒度粉末的分散体作为等离子喷涂的原料可从相对便宜的前体产生亚微米/纳米晶体结构涂层。纳米晶HA涂层可以改善涂层在体内的吸收,避免了大颗粒的刺激作用,而这种刺激作用在当前的热喷涂HA涂层中很明显。我们已经探索了使用由几种不同的前体制备的溶胶作为原料,将HA涂层等离子喷涂沉积在Ti6A14V基底上的方法,并通过实验的统计设计来建立最佳沉积条件。我们报告了涂层的形成和特性与沉积参数的关系。通过X射线衍射分析评估了不同的Ca-P结晶相和非晶相的存在。通过扫描/透射电子显微镜对涂层的微观结构进行表征。讨论了该技术对生物医学植入物涂层的适用性。

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