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Morphology and growth of porous anodic oxide films on Ti-10V-2Fe-3Al in neutral tartrate solution 被引量:5

Morphology and growth of porous anodic oxide films on Ti-10V-2Fe-3Al in neutral tartrate solution
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摘要 Porous anodic oxide films were fabricated galvanostatically on titanium alloy Ti-10V-2Fe-3Al in ammonium tartrate solution with different anodizing time.Scanning electron microscopy(SEM) and field emission scanning electron microscopy(FE-SEM) were used to investigate the morphology evolution of the anodic oxide film.It is shown that above the breakdown voltage,oxygen is generated with the occurrence of drums morphology.These drums grow and extrude,which yields the compression stress.Subsequently,microcracks are generated.With continuous anodizing,porous oxides form at the microcracks.Those oxides grow and connect to each other,finally replace the microcrack morphology.The depth profile of the anodic oxide film formed at 1 800 s was examined by Auger electron spectroscopy(AES).It is found that the film is divided into three layers according to the molar fractions of elements.The outer layer is incorporated by carbon,which may come from electrolyte solution.The thickness of the outer layer is approximately 0.2-0.3 μm.The molar fractions of elements in the intermediate layer are extraordinarily stable,while those in the inner layer vary significantly with sputtering depth.The thicknesses of the intermediate layer and the inner layer are 2 μm and 1.0-1.5 μm,respectively.Moreover,the growth mechanism of porous anodic oxide films in neutral tartrate solution was proposed. Porous anodic oxide films were fabricated galvanostatically on titanium alloy Ti-10V-2Fe-3Al in ammonium tartrate solution with different anodizing time. Scanning electron microscopy (SEM) and field emission scanning electron microscopy (FE-SEM) were used to investigate the morphology evolution of the anodic oxide film, It is shown that above the breakdown voltage, oxygen is generated with the occurrence of drums morphology. These drums grow and extrude, which yields the compression stress. Subsequently, microcracks are generated. With continuous anodizing, porous oxides form at the microcracks. Those oxides grow and connect to each other, finally replace the microcrack morphology. The depth profile of the anodic oxide film formed at 1 800 s was examined by Auger electron spectroscopy (AES). It is found that the film is divided into three layers according to the molar fractions of elements. The outer layer is incorporated by carbon, which may come from electrolyte solution. The thickness of the outer layer is approximately 0.2-0.3 μm. The molar fractions of elements in the intermediate layer are extraordinarily stable, while those in the inner layer vary significantly with sputtering depth. The thicknesses of the intermediate layer and the inner layer are 2 μm and 1.0- 1.5 μm, respectively. Moreover, the growth mechanism of porous anodic oxide films in neutral tartrate solution was proposed.
出处 《Journal of Central South University》 SCIE EI CAS 2011年第1期6-15,共10页 中南大学学报(英文版)
基金 Project(50571003) supported by the National Natural Science Foundation of China
关键词 titanium alloy porous anodic oxide films morphology evolution growth mechanism 阳极氧化膜 酒石酸铵 形态演化 生长机理 酸溶液 场发射扫描电子显微镜 多孔 中性
作者简介 Corresponding author: LIU Jian-hua, Professor, PhD; Tel/Fax: +86-10-82317103; E-mail: liujh@buaa.edu.cn
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  • 1张翥.β钛合金的概述[J].稀有金属,1995,19(4):296-299. 被引量:27
  • 2幸泽宽,唐恩军,段睿,颜明华,徐洮.TC4钛合金微弧阳极氧化膜层结构与性能的研究[J].材料保护,2005,38(12):54-57. 被引量:22
  • 3曹春晓.钛合金在大型运输机上的应用[J].稀有金属快报,2006,25(1):17-21. 被引量:104
  • 4POPA M V, VASIESCU E, DROB P, ANGHEL M, VASILESCU C ROSCA I M, LOPEZ A S. Anodic passivity of some titanium base alloys in aggressive environments [J]. Material Corrosion, 2002, 53(1): 51-59.
  • 5LU Xiong, LENG Yang, ZHANG Xing-dong, XU Jin-rui, QIN Ling, CHAN Chtm-wai. Comparative study of osteoconduction on micromachined and alkali-treated titanium alloy surfaces in vitro and in vivo [J]. Biomaterials, 2005, 26(14): 1793-1801.
  • 6MILOSEY I, KOSEC T, STREHBLOW H H. XPS and EIS study of the passive film formed on orthopaedic Ti-6AI-7Nb alloy in Hank's physiological solution [J]. Electrochimica Acta, 2008, 53(9): 3547- 3558.
  • 7BERANEK R, HILDEBRAND H, SCHMUKI P. Self-organized porous titanium oxide prepared in H2SO4/HF electrolytes [J]. Electrochemical and Solid-state Letters, 2003, 6(3)L 12-14.
  • 8BAUER S, KLEBER S, SCHMUKI P. TiO2 nanotubes: Tailoring the geometry in H3POa/HF electrolytes [J]. Electrochemistry Communications, 2006, 8(8): 1321-1325.
  • 9LIU Jian-hua, YI Jun-lan, LI Song-mei, YU Mei, XU Yong-zheng. Fabrication and characterization of anodic oxide coatings on titanium alloy Ti-10V-2Fe-3Al [J]. Int J Miner Metal Mater, 2009, 16(1): 96- 102.
  • 10GAPONENKO N V, HLUZD Y V, MALIAREVICH G K, MOLCHAN I S, THOMPSON G E, DABBOUSSI S, ELHOUICHET H, PRISLOPSKI S Y, LUTICH A A. Roomtemperature photoluminescence from porous anodic alumina films with embedded terbium and europium species [J]. Materials Letters, 2009, 63(6/7): 621-624.

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