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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tribocorrosion behaviour of anodic treated titanium surfaces intended for dental implants
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Tribocorrosion behaviour of anodic treated titanium surfaces intended for dental implants

机译:用于牙科植入物的阳极处理钛表面的摩擦腐蚀行为

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摘要

Tribocorrosion plays an important role in the lifetime of metallic implants. Once implanted, biomaterials are subjected to micro-movements in aggressive biological fluids. Titanium is widely used as an implant material because it spontaneously forms a compact and protective nanometric thick oxide layer, mainly TiO_2, in ambient air. That layer provides good corrosion resistance, and very low toxicity, but its low wear resistance is a concern. In this work, an anodizing treatment was performed on commercial pure titanium to form a homogeneous thick oxide surface layer in order to provide bioactivity and improve the biological, chemical and mechanical properties. Anodizing was performed in an electrolyte containing β-glycerophosphate and calcium acetate. The influence of the calcium acetate content on the tribocorrosion behaviour of the anodized material was studied. The concentration of calcium acetate in the electrolyte was found to largely affect the crystallographic structure of the resulting oxide layer. Better tribocorrosion behaviour was noticed on increasing the calcium acetate concentration.
机译:摩擦腐蚀在金属植入物的使用寿命中起着重要作用。植入后,生物材料会在侵蚀性生物流体中经受微运动。钛被广泛用作植入材料,因为它会在环境空气中自发形成致密且具保护性的纳米厚氧化层,主要是TiO_2。该层具有良好的耐腐蚀性和极低的毒性,但是其低的耐磨性是一个问题。在这项工作中,对商用纯钛进行了阳极氧化处理,以形成均匀的厚氧化物表面层,以提供生物活性并改善生物学,化学和机械性能。在含有β-甘油磷酸和乙酸钙的电解质中进行阳极氧化。研究了乙酸钙含量对阳极氧化材料摩擦磨损行为的影响。发现电解质中乙酸钙的浓度在很大程度上影响所得氧化物层的晶体结构。在增加乙酸钙浓度时注意到更好的摩擦腐蚀行为。

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