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首页> 外文期刊>Surface & Coatings Technology >Comparative study of structure and properties of thermal spray coatings using conventional and nanostructured hydroxyapatite powder, for applications in medical implants
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Comparative study of structure and properties of thermal spray coatings using conventional and nanostructured hydroxyapatite powder, for applications in medical implants

机译:常规和纳米羟基磷灰石粉的热喷涂涂层结构与性能的比较研究,用于医疗植入物的应用

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The objective of this paper is to study and compare the structure and properties of thermal spray coatings prepared with conventional and nanostructured hydroxyapatite powder, in order to assess their suitability for future use in medical implants. Four coatings were prepared via Atmospheric Plasma Spray process (APS). Two kinds of feedstock material were employed for the spray process, namely, commercial XPT-D-703 hydroxyapatite powder for half the samples and novel nanostructured PYRO 4 hydroxyapatite powder, which had previously been mechanically treated, for the remaining samples. The substrate of all the samples was stainless steel 304. Finally, the plasma spray parameters were altered for two out of the four coatings, each produced with a different type of powder, in order for a sufficient amount of porosity to be achieved for future incorporation of biomolecules. The coatings were also examined in terms of bioactivity in vitro. It was concluded that the coating produced with the nanostructured powder, under lower plasma energy and at greater spraying distance presented the best results regarding its roughness, bioactive response, crystallinity, adherence and porosity content.
机译:本文的目的是研究和比较用常规和纳米结构羟基磷灰石粉制备的热喷涂涂层的结构和性质,以评估其在医疗植入物中的未来使用的适用性。通过大气等离子体喷雾工艺(AP)制备四种涂层。采用两种原料材料用于喷涂方法,即商业XPT-D-703羟基磷灰石粉末,用于剩余的样品以上先前机械处理的一半样品和新型纳米结构的PYRO 4羟基磷灰石粉末。所有样品的基材是不锈钢304.最后,将等离子体喷射参数从四个涂层中的两个出来改变,每个涂料用不同类型的粉末制备,以便为未来的合并实现足够量的孔隙率生物分子。还在体外生物活性检查涂层。得出结论:用纳米结构粉末产生的涂层在低等离子体能量和更大的喷雾距离下呈现了其粗糙度,生物活性反应,结晶度,粘附性和孔隙率的最佳结果。

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