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Impact Evaluation of High Energy Ball Milling Homogenization Process in the Phase Distribution of Hydroxyapatite-Barium Titanate Plasma Spray Biocoating

机译:高能球铣削均质化过程对羟基磷灰石钡钛等等离子体喷雾生物灭活过程的影响评价

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Air plasma spray technique (APS) is widely used in the biomedical industry for the development of HA-based biocoatings. The present study focuses on the influence of powder homogenization treatment by high-energy ball milling (HEBM) in developing a novel hydroxyapatite-barium titanate (HA/BT) composite coating deposited by APS; in order to compare the impact of the milling process, powders were homogenized by mechanical stirring homogenization (MSH) too. For the two-homogenization process, three weight percent ratios were studied; 10%, 30%, and 50% w/w of BT in the HA matrix. The phase and crystallite size were analyzed by X-ray diffraction patterns (XRD); the BT-phase distribution in the coating was analyzed by backscattered electron image (BSE) with a scanning electron microscope (SEM); the energy-dispersive X-ray spectroscopy (EDS) analysis was used to determinate the Ca/P molar ratio of the coatings, the degree of adhesion (bonding strength) of coatings was determinate by pull-out test according to ASTM C633, and finally the nanomechanical properties was determinate by nanoindentation. In the results, the HEBM powder processing shows better efficiency in phase distribution, being the 30% (w/w) of BT in HA matrix that promotes the best bonding strength performance and failure type conduct (cohesive-type), on the other hand HEBM powder treatment promotes a slightly greater crystal phase stability and crystal shrank conduct against MSH; the HEBM promotes a better behavior in the nanomechanical properties of (i) adhesive strength, (ii) cohesive/adhesive failure-type, (iii) stiffness, (iv) elastic modulus, and (v) hardness properties.
机译:空气等离子体喷涂技术(APS)广泛应用于生物医学行业,以开发基于HA的生物织种。本研究重点研究了高能球磨(HEBM)在开发APS沉积的新型羟基磷灰石 - 钛(HA / BT)复合涂层中的高能球磨(HEBM)的影响;为了比较铣削过程的影响,粉末也通过机械搅拌均质化(MSH)均化。对于两种均质化过程,研究了三个重量百分比; HA基质中的10%,30%和50%w / w。通过X射线衍射图(XRD)分析相和微晶尺寸;通过用扫描电子显微镜(SEM)通过背散射电子图像(BSE)分析涂层中的BT相分布;能量分散X射线光谱(EDS)分析用于测定涂层的CA / P摩尔比,根据ASTM C633,通过拉出试验测定涂层的粘附程度(粘合强度),最后通过纳米凸缘测定纳米力学性质。在结果中,HEBM粉末处理在相分布中显示出更好的效率,是HA基质中的30%(w / w),促进了最佳的粘合强度性能和失效型(凝聚型),另一方面HEBM粉末处理促进略大较大的晶相稳定性和晶莹剔透的MSH; HEBM促进(i)粘合强度,(ii)粘性/粘合衰竭型,(III)刚度,(iv)弹性模量和(v)硬度性能的更好的行为。

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