Ti中间层对HAp等离子喷涂生物相容性涂层性能的影响

IF 0.8 Q4 ELECTROCHEMISTRY Corrosion Science and Technology-Korea Pub Date : 2020-01-01 DOI:10.14773/CST.2020.19.2.51
S. Take, Tusyoshi Otabe, Wataru Ohgake, T. Atsumi
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引用次数: 0

摘要

本研究的目的是通过两种不同的方法引入中间层来改善等离子喷涂钛基板的性能。在钛基上涂覆锌掺杂HAp涂层之前,先通过钛等离子喷涂或钛阳极氧化的方法引入一层中间层。在钛中间层形成后,对部分试样进行热处理。采用等离子喷涂的方法制备了掺杂锌的HAp顶层。采用三点弯曲试验和拉脱附着力试验来测定掺杂Zn的HAp涂层与基体的附着力。通过Hanks溶液中的电化学阻抗测量,评估了锌掺杂HAp等离子喷涂涂层在钛上的长期可靠性。结果表明,钛等离子喷涂中间层和钛阳极氧化中间层均具有良好的可靠性。等离子喷涂钛中间层的涂层样品浸泡12周后,与钛基体的附着力较强。钛阳极氧化中间层的试样具有良好的抗弯强度。然而,它们表现出相对较差的抗拔性。阳极氧化钛中间层的厚度比等离子喷涂钛中间层的厚度控制更为精确,具有重要的实际应用价值。
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Effect of Ti Intermediate Layer on Properties of HAp Plasma Sprayed Biocompatible Coatings
The objective of this study was to improve properties of plasma sprayed HAp layer to titanium substrate by introducing an intermediate layer with two different methods. Before applying Zn doped HAp coating on titanium substrate, an intermediate layer was introduced by titanium plasma spray or titanium anodization. Heat treatments were conducted for some samples after titanium intermediate layer was formed. Zn doped HAp top layer was applied by plasma spraying. Three-point bending test and pull-off adhesion test were performed to determine the adhesion of Zn doped HAp coatings to substrates. Long-term credibility of Zn doped HAp plasma sprayed coatings on titanium was assessed by electrochemical impedance measurements in Hanks’ solution. It was found that both titanium plasma sprayed and titanium anodized intermediate layer had excellent credibility. Strong adhesion to the titanium substrate was confirmed after 12 weeks of immersion for coating samples with titanium plasma sprayed intermediate layer. Samples with titanium anodized intermediate layer showed good bending strength. However, they showed relatively poor resistance against pulling off. The thickness of titanium anodized intermediate layer can be controlled much more precisely than that of plasma sprayed one, which is important for practical application.
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CiteScore
1.30
自引率
66.70%
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