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Mechanical Properties, microstructural Characteristics and In-Vitro Behavior of APS-Sprayed Nanostructured and Conventional Hydroxyapatite Coatings

机译:APS喷涂纳米结构和常规羟基磷灰石涂料的机械性能,微观结构特征和体外行为

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Nanostructured and conventional hydroxyapatite (HA) feedstocks were evaluated to determine the effects of feedstock structure on the processing, properties and performance of coatings produced by atmospheric plasma spraying. The structure of the feedstocks was characterized using scanning electron microscopy (SEM). It was found that the nanostructured feedstock particles were formed by an agglomeration of nanostructured fibers having dimensions of less than 500 nm in length and below 100 nm in width. The average particle temperatures and velocities were measured during plasma spraying and found to be -2650 deg C and -315 m/s for the both feedstocks. The mechanical, microstructural and biocompatibility characteristics of coatings deposited on Ti-6Al-4V substrates were evaluated. The hardness was measured using Vickers indentation. The bond strength was determined via a tensile adhesion test. Microstructural characteristics of the coatings and their porosity levels were evaluated using SEM and image analysis. Phase analysis was carried out via X-ray diffraction (XRD) and aided by energy-dispersive X-ray analysis (EDS). The in-vitro behavior of these coatings was investigated in a simulated physiological solution in an attempt to simulate the environment of an implant in the human body.
机译:评价纳米结构和常规的羟基磷灰石(HA)原料以确定原料结构对由大气等离子体喷涂产生的涂层的加工,性能和性能的影响。使用扫描电子显微镜(SEM)表征原料的结构。发现纳米结构原料颗粒通过纳米结构纤维的凝聚而形成,尺寸小于500nm的长度,宽度低于100nm。在等离子体喷涂期间测量平均颗粒温度和速度,发现两种原料中的2650℃和-315m / s。评价沉积在Ti-6AL-4V底物上的涂层的机械,微观结构和生物相容性特性。使用维氏缩进测量硬度。通过拉伸粘附试验测定粘合强度。使用SEM和图像分析评估涂层的微观结构特性及其孔隙率。通过X射线衍射(XRD)进行相位分析,并通过能量分散X射线分析(EDS)辅助。在模拟的生理溶液中研究了这些涂层的体外行为,试图模拟人体中植入物的环境。

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