欢迎登录材料期刊网

材料期刊网

高级检索

采用机械研磨处理与气动喷砂工艺,对工业纯钛进行了表面处理.研究分析借助于X射线衍射仪,扫描电镜比较了处理前后的表面结构.同时利用极化曲线以及阻抗谱,表征了处理前后的抗腐蚀性.结果表明:经过机械研磨处理后的试样在模拟海水中的抗腐蚀性能有了显著的提高.而经过气动喷丸工艺处理后的试样在模拟海水中的抗腐蚀性能其自腐蚀电压有了些许下降,相比于未处理试样下降了26.1%.自腐蚀电流密度有一定程度的提高,相比于未处理试样提高了35.1%.为了方便比较,测试相关性能时仍然选用未处理的工业纯钛进行参照.

参考文献

[1] Mitsuo Niinomi;Masaaki Nakai;Junko Hieda .Development of new metallic alloys for biomedical applications.[J].Acta biomaterialia,2012(11):3888-3903.
[2] Niinomi M .Mechanical biocompatibilities of titanium alloys for biomedical applications[J].Journal of the Mechanical Behavior of Biomedical Materials,2008,1(01):30-42.
[3] Guillemot F .Recent advances in the design of titanium alloys for orthopedic applications.[J].Expert review of medical devices,2005(6):741-748.
[4] Abdel-HadyGepreel,M.;Niinomi,M..Biocompatibility of Ti-alloys for long-term implantation[J].Journal of the mechanical behavior of biomedical materials,2013:407-415.
[5] Roland T;Retraint D;Lu K;Lu J .Fatigue life improvement through surface nanostructuring of stainless steel by means of surface mechanical attrition treatment[J].Scripta materialia,2006(11):1949-1954.
[6] K.S. Raja;S.A. Namjoshi;M. Misra .Improved corrosion resistance of Ni-22Cr-13Mo-4W Alloy by surface nanocrystallization[J].Materials Letters,2005(5):570-574.
[7] 颜婧,盛光敏.表面纳米化后表层纳米结构的热稳定性研究现状[J].材料导报,2008(06):45-48.
[8] Laing P G .Compatibility of biomaterials[J].The Orthopedic Clinics of North America,1973,4(02):249-273.
[9] Wang K .The use of titanium for medical applications in the USA[J].Materials Science and Engineering A,1996,213(01):134-137.
[10] 徐可为;胡奈赛;何家文 .纯铜和黄铜喷丸强化的组织效应[J].金属学报,1994,30(01):29-34.
[11] 邹常荣 .钛涂层氧化处理[J].稀有金属,1985,2(04):46-45.
[12] Kobayashi E;Matsumoto S;Yoneyama T et al.Mechanical properties of the binary titanium-zirconium alloys and their potential for biomedical materials[J].Journal of Biomedical Materials Research,1995,29(08):943-950.
[13] Liu XY;Chu PK;Ding CX .Surface modification of titanium, titanium alloys, and related materials for biomedical applications[J].Materials Science & Engineering, R. Reports: A Review Journal,2004(3/4):49-121.
[14] Jelliti, S.;Richard, C.;Retraint, D.;Roland, T.;Chemkhi, M.;Demangel, C..Effect of surface nanocrystallization on the corrosion behavior of Ti-6Al-4V titanium alloy[J].Surface & Coatings Technology,2013:82-87.
[15] Xie, YB;Zhou, LM;Lu, J .Photoelectrochemical behavior of titania nanotube array grown on nanocrystalline titanium[J].Journal of Materials Science,2009(11):2907-2915.
[16] Zhu K Y;Vassel A;Brisset F et al.Nanostrncture formation mechanism of α-titanium using SMAT[J].Acta Materialia,2004,52(14):4101-4110.
[17] Waterhouse R B .Tribology and electrochemistry[J].Tribology,1970,3(03):158-162.
[18] Brandon N P;Bonanos N;Fogarty P O et al.Influence of potential on the friction and wear of mild steel in a model aqueous lubricant[J].Journal of Applied Electrochemistry,1993,23(05):456-462.
[19] ZHU Y Y;KELSALL G H;Spikes H A .The Influence of electrochemical potentials on the friction and wear of iron and iron oxides in aqueous systems[J].Trib Tram,1994,37(04):811-819.
[20] Liu C;Bi Q;Leyland A et al.An electrochemical impedance spectroscopy study of the corrosion behaviour of PVD coated steels in 0.5 N NaCl aqueous solution:Part Ⅱ:EIS interpretation of corrosion behavior[J].Corrosion Science,2003,45(06):1257-1273.
[21] Nakagawa M;Matsuya S;Shiraishi T;Ohta M .Effect of fluoride concentration and pH on corrosion behavior of titanium for dental use.[J].Journal of Dental Research: Official Publication of the International Association for Dental Research,1999(9):1568-1572.
[22] Nakagawa M;Matsuya S;Udoh K .Corrosion behavior of pure titanium and titanium alloys in fluoride-containing solutions[J].Dental Materials Journal,2001,20(04):305-314.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%