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钛合金长期植入体内依然存在磨损和腐蚀的问题,因此钛合金表面改性的目的就是提高其表面耐蚀性、耐磨性并赋予生物活性.本文在3种不同的电解液中,采用等离子电解氧化技术在TA1纯钛表面制备含有Ca、P的氧化钛多孔复合陶瓷层.研究了不同电解液中,改变工艺参数对纯钛表面陶瓷层平均厚度和生长机制的影响.采用扫描电镜和能谱分析了电流密度改变时,3种不同电解液中生成复合陶瓷膜的表截面形貌以及成分.结果表明,相同的电流密度,在电解液B中,陶瓷膜初始击穿电位最大,电解液C中陶瓷膜初始击穿电位值最小.正向电流为16 A/dm2时,在电解液A中陶瓷膜表面出现粉末状团聚物,在电解液B和C中,没有粉末状团聚物出现.无论是工艺参数还是电解液成分,对纯钛生物陶瓷膜的生长过程与组织结构都产生很大的影响,适当控制可制备所需的功能陶瓷膜.  相似文献   
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The oxidation properties of Fe-20Cr,Fe-20Cr-0.2Dy and Fe-20Cr-1Dy alloys were studied using gravimetric and electrochemical techniques.The high-temperature oxide films of Dy-doped Fe-20Cr alloys were prepared in air at 900 oC for 24,48 and 100 h,respectively.The electrochemical experiment was performed by a three-electrode electrochemical cell and in 0.1 mol/L Na2SO4 aqueous solution.Proper models were built for describing electrochemical impedance spectroscopy of the different oxide layers and the spectra were interpreted in terms of a two-layer model of the films.The results revealed that the oxide films of Dy-doped Fe-20Cr alloys became compacter than that of undoped alloys and retained their good protective ability for a relatively long time.With increasing content of Dy,the protection of the oxide films slightly decreased.Mott-Schottky curves indicated that all the oxides were n-type semi-conductors,and the Nd value of oxide film on Fe-20Cr was much larger than that of Dy-doped Fe-20Cr alloys.The results of kinetic curves and SEM were in agreement with electro-chemical impedance spectroscopy and Mott-Schottky data.  相似文献   
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