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Sol-gel deposition of hydroxyapatite coatings on porous titanium for biomedical applications

机译:溶胶 - 凝胶沉积羟基磷灰石涂层对生物医学应用的多孔钛

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AbstractThe stress shielding and the poor osseointegration in titanium implants are still problems to be resolved. In this context, this work proposes a balanced solution. Titanium samples were fabricated, with a porosity of 100–200μm of pore size employing space-holder technique (50vol% NH4HCO3, 800MPa at 1250°C during 2h under high vacuum conditions), obtaining a good equilibrium between stiffness and mechanical resistance. The porous titanium substrates were coated with hydroxyapatite, obtained by sol-gel technique: immersion, dried at 80°C and heat treatment at 450°C during 5h under vacuum conditions. Phases, surface morphology and interfacial microstructure of the transverse section were analyzed by Micro-Computed Tomography, SEM and confocal laser, as well as the infiltration capability of the coating into the metallic substrate pores. The FTIR and XRD showed the crystallinity of the phases and the chemical composition homogeneity of the coating. The size and interconnected pores obtained allow the infiltration of hydroxyapatite (HA), possible bone ingrowth and osseointegration. The scratch resistance of the coating corroborated a good adherence to the porous metallic substrate. The coated titanium samples have a biomechanical and biofunctional equilibrium, as well as a potential use in biomedical applications (partial substitution of bone tissue).Highlights
机译:<![cdata [ 抽象 钛植入物中的应力屏蔽和差的骨整合仍有问题仍有问题。在这种情况下,这项工作提出了平衡的解决方案。制造钛样品,孔隙率为100-200μm的孔径,采用空间架技术(50Vol%NH 4 HCO 3 ,在高真空条件下在2小时内为1250°C,800MPa在高真空条件下,在刚度和机械性之间获得良好的平衡。多孔钛基材用羟基磷灰石涂覆,得到通过溶胶 - 凝胶技术获得的:浸渍,在80℃下在80℃下在真空条件下在450℃下热处理。通过微型计算机断层扫描,SEM和共聚焦激光分析横截面的阶段,表面形态和界面微观结构,以及涂层进入金属基质孔的渗透能力。 FTIR和XRD显示出阶段的结晶度和涂层的化学成分均匀性。获得的尺寸和相互连接的孔允许羟基磷灰石(HA)的渗透,可能的骨骼发起和骨整合。涂层的耐刮擦性证实了对多孔金属基材的良好粘附。涂覆的钛样品具有生物力学和生物功能平衡,以及在生物医学应用中的潜在用途(部分替代骨组织)。 亮点

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