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A Modified Surface on Titanium Alloy by Micro-Blasting Process

机译:微喷砂工艺钛合金改性表面

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Hydroxyapatite (HA) coating of hard tissue implants is widely employed for its biocompatible and osteoconductive properties as well as its improved mechanical properties.In this study,a novel micro-blasting process has been used to successfully modify a titanium alloy substrate with a HA treatment using a dopant/abrasive regime.The impact of a series of apatite abrasives,was investigated to determine the effect of abrasive particle size on the surface properties of both micro-blasting (abrasive only) and continuous (HA/abrasive) treatments.The resultant HA treated substrates were compared to substrates treated with abrasive only (micro-blasted) and an untreated Ti.The HA powder,apatite abrasives and the treated substrates were characterized for chemical composition,coating coverage,crystalline and topography.The results show that the surface roughness of the HA blasted modification was affected by the particle size of the apatite abrasives used.This study demonstrates the ability of the continuous process to deposit HA coatings with a range of surface properties onto Ti alloy substrates.The ability of the continuous technology to offer diversity in modifying surface topography offers exciting new prospects in tailoring the properties of medical devices for applications ranging from dental to orthopedic settings.
机译:硬组织植入物的羟基磷灰石(HA)涂层广泛用于其生物相容性和骨导电性能,以及其改进的机械性能。在本研究中,新的微喷射过程已被用来用HA处理成功地改变钛合金基质使用掺杂剂/磨料制度。研究了一系列磷灰石磨料的影响,以确定磨料粒度对微喷射(仅磨料)和连续(HA /磨料)处理的表面性质的影响。结果将HA处理的底物与仅用磨料处理的底物(微喷射)和未处理的Ti。HA粉末,磷灰石磨料和经处理的底物的特征在于化学成分,涂层覆盖,结晶和形貌。结果表明了表面HA Blasted修饰的粗糙度受到磷灰石磨料的粒度的影响。本研究表明了TH的能力e连续过程将具有一系列表面性质的HA涂层沉积在Ti合金基板上。连续技术在改装表面形貌中提供多样性的能力为旨在根据牙科矫正环境的应用的应用程序提供令人兴奋的新前景。

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