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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Surface-treated commercially pure titanium for biomedical applications: Electrochemical, structural, mechanical and chemical characterizations
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Surface-treated commercially pure titanium for biomedical applications: Electrochemical, structural, mechanical and chemical characterizations

机译:用于生物医学应用的经表面处理的商业纯钛:电化学,结构,机械和化学表征

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Modified surfaces have improved the biological performance and biomechanical fixation of dental implants compared to machined (polished) surfaces. However, there is a lack of knowledge about the surface properties of titanium (Ti) as a function of different surface treatment. This study investigated the role of surface treatments on the electrochemical, structural, mechanical and chemical properties of commercial pure titanium (cp-Ti) under different electrolytes. Cp-Ti discs were divided into 6 groups (n = 5): machined (M-control); etched with HCl + H2O2 (Cl), H2SO4 + H2O2 (5); sandblasted with Al2O3 (Sb), Al2O3 followed by HCl + H2O2 (SbCl), and Al2O3 followed by H2SO4 + H2O2 (SbS). Electrochemical tests were conducted in artificial saliva (pHs 3; 6.5 and 9) and simulated body fluid (SBF-pH 7.4). All surfaces were characterized before and after corrosion tests using atomic force microscopy, scanning electron microscopy, energy dispersive microscopy, X-ray diffraction, surface roughness, Vickers microhardness and surface free energy. The results indicated that Cl group exhibited the highest polarization resistance (R-p) and the lowest capacitance (Q) and corrosion current density (I-corr) values. Reduced corrosion stability was noted for the sandblasted groups. Acidic artificial saliva decreased the R-p values of cp-Ti surfaces and produced the highest I-corr values. Also, the surface treatment and corrosion process influenced the surface roughness, Vickers microhardness and surface free energy. Based on these results, it can be concluded that acid-etching treatment improved the electrochemical stability of cp-Ti and all treated surfaces behaved negatively in acidic artificial saliva. (C) 2016 Elsevier B.V. All rights reserved.
机译:与机械加工(抛光)表面相比,改性表面改善了牙科植入物的生物学性能和生物力学固定性。然而,缺乏关于钛(Ti)的表面性质作为不同表面处理的函数的知识。这项研究调查了表面处理对不同电解质下商业纯钛(cp-Ti)的电化学,结构,机械和化学性能的作用。 Cp-Ti光盘分为6组(n = 5):机加工(M-control);用HCl + H2O2(Cl),H2SO4 + H2O2(5)蚀刻;先用Al2O3(Sb),Al2O3,然后用HCl + H2O2(SbCl)和Al2O3,然后用H2SO4 + H2O2(SbS)喷砂。在人造唾液(pHs 3; 6.5和9)和模拟体液(SBF-pH 7.4)中进行电化学测试。使用原子力显微镜,扫描电子显微镜,能量分散显微镜,X射线衍射,表面粗糙度,维氏显微硬度和表面自由能对腐蚀前后的所有表面进行表征。结果表明Cl基团表现出最高的极化电阻(R-p)和最低的电容(Q)和腐蚀电流密度(I-corr)值。注意到喷砂处理组的腐蚀稳定性降低。酸性人工唾液降低了cp-Ti表面的R-p值,并产生了最高的I-corr值。同样,表面处理和腐蚀过程也会影响表面粗糙度,维氏显微硬度和表面自由能。根据这些结果,可以得出结论,酸腐蚀处理提高了cp-Ti的电化学稳定性,并且所有处理过的表面在酸性人造唾液中均表现为负值。 (C)2016 Elsevier B.V.保留所有权利。

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