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生物功能化高孔隙率钛的摩擦腐蚀行为

Tribocorrosion behavior of bio-functionalized highly porous titanium.

作者信息

Toptan F, Alves A C, Pinto A M P, Ponthiaux P

机构信息

CMEMS-UMinho - Center for MicroElectroMechanical Systems - Universidade do Minho, Azurém, 4800-058 Guimarães, Portugal; Universidade do Minho, Dept. Eng. Mecânica, Azurém, 4800-058 Guimarães, Portugal.

CMEMS-UMinho - Center for MicroElectroMechanical Systems - Universidade do Minho, Azurém, 4800-058 Guimarães, Portugal.

出版信息

J Mech Behav Biomed Mater. 2017 May;69:144-152. doi: 10.1016/j.jmbbm.2017.01.006. Epub 2017 Jan 4.

Abstract

Titanium and its alloys are widely used in orthopedic and dental implants, however, some major clinical concerns such as poor wear resistance, lack of bioactivity, and bone resorption due to stress shielding are yet to be overcome. In order to improve these drawbacks, highly porous Ti samples having functionalized surfaces were developed by powder metallurgy with space holder technique followed by anodic treatment. Tribocorrosion tests were performed in 9g/L NaCl solution using a unidirectional pin-on-disc tribometer under 3N normal load, 1Hz frequency and 4mm track diameter. Open circuit potential (OCP) was measured before, during and after sliding. Worn surfaces investigated by field emission gun scanning electron microscope (FEG-SEM) equipped with energy dispersive X-ray spectroscopy (EDS). Results suggested bio-functionalized highly porous samples presented lower tendency to corrosion under sliding against zirconia pin, mainly due to the load carrying effect given by the hard protruded oxide surfaces formed by the anodic treatment.

摘要

钛及其合金广泛应用于骨科和牙科植入物,然而,一些主要的临床问题,如耐磨性差、缺乏生物活性以及由于应力屏蔽导致的骨吸收等,仍有待克服。为了改善这些缺点,采用带空间保持器技术的粉末冶金法,随后进行阳极处理,制备了具有功能化表面的高孔隙率钛样品。使用单向销盘摩擦磨损试验机在9g/L氯化钠溶液中,在3N法向载荷、1Hz频率和4mm轨道直径条件下进行摩擦腐蚀试验。在滑动前、滑动过程中和滑动后测量开路电位(OCP)。通过配备能量色散X射线光谱仪(EDS)的场发射枪扫描电子显微镜(FEG-SEM)对磨损表面进行研究。结果表明,生物功能化的高孔隙率样品在与氧化锆销滑动摩擦时,腐蚀倾向较低,这主要归因于阳极处理形成的坚硬突出氧化物表面所产生的承载效应。

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