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Surface chemistry of Ti6Al4V components fabricated using selective laser melting for biomedical applications

机译:使用选择性激光熔融技术为生物医学应用制造的Ti6Al4V组件的表面化学

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摘要

Selective laser melting (SLM) has previously been shown to be a viable method for fabricating biomedical implants; however, the surface chemistry of SLM fabricated parts is poorly understood. In this study, X-ray photoelectron spectroscopy (XPS) was used to determine the surface chemistries of (a) SLM as-fabricated (SLM-AF) Ti6Al4V and (b) SLM fabricated and mechanically polished (SLM-MP) Ti6Al4V samples and compared with (c) traditionally manufactured (forged) and mechanically polished Ti6Al4V samples. The SLM– AF surface was observed to be porous with an average surface roughness (Ra) of 17.6 ± 3.7 μm. The surface chemistry of the SLM-AF was significantly different to the FGD-MP surface with respect to elemental distribution and their existence on the outermost surface Sintered particles on the SLM-AF surface were observed to affect depth profiling of the sample due to a shadowing effect during argon ion sputtering. Surface heterogeneity was observed for all three surfaces; however, vanadium was witnessed only on the mechanically polished (SLM-MP and FGD-MP) surfaces. The direct and indirect 3T3 cell cytotoxicity studies revealed that the cells were viable on the SLM fabricated Ti6Al4V parts. The varied surface chemistry of the SLM-AF and SLM-MP did not influence the cell behaviour.
机译:选择性激光熔化(SLM)先前已被证明是一种制造生物医学植入物的可行方法。但是,对SLM制成零件的表面化学知之甚少。在这项研究中,使用X射线光电子能谱(XPS)来确定(a)SLM预制(SLM-AF)Ti6Al4V和(b)SLM制成并机械抛光(SLM-MP)的Ti6Al4V样品的表面化学性质,以及与(c)传统制造(锻造)和机械抛光的Ti6Al4V样品相比。观察到SLM–AF表面是多孔的,平均表面粗糙度(Ra)为17.6±3.7μm。就元素分布而言,SLM-AF的表面化学性质与FGD-MP表面显着不同,并且它们在最外表面的存在被观察到,SLM-AF表面的烧结颗粒会由于阴影而影响样品的深度轮廓分析在氩离子溅射过程中产生效应。在所有三个表面上均观察到表面异质性。但是,钒仅在机械抛光(SLM-MP和FGD-MP)表面上可见。直接和间接3T3细胞的细胞毒性研究表明,这些细胞在SLM制成的Ti6Al4V零件上是可行的。 SLM-AF和SLM-MP表面化学的变化不会影响细胞的行为。

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