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毕业论文网 > 任务书 > 矿业类 > 冶金工程 > 正文

钛合金在含硫海水中应力腐蚀研究任务书

 2020-05-31 08:05  

1. 毕业设计(论文)的内容和要求

钛是20世纪50年代发展起来的一种重要的结构金属。

钛合金因具有强度高、耐蚀性好、耐热性高等特点而被广泛用于各个领域。

本次课题通过研究钛合金在含硫海水中的应力腐蚀,以了解硫在海水中对钛合金应力腐蚀行为的影响。

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2. 参考文献

[1] R.M. Cibirka, S.K. Nelson, B.R. Lang, F.A. Rueggeberg, Examination of the implant#8212;abutment interface after fatigue testing, J. Prosthet. Dent. 85 (2001) 268#8211;275. [2] C.J. Goodacre, G. Bernal, K. Rungcharassaeng, J.Y.K. Kan, Clinical complications with implants and implant prostheses, J. Prosthet. Dent. 90 (2003) 121#8211;132. [3] C.G. Ribeiro, M.L.C. Maia, S.S. Scherrer, A.C. Cardoso, H.W.A. Wiskott, Resistance of three implant-abutment interfaces to fatigue testing, J. Appl. Oral Sci. 19 (2011) 413#8211;420. [4] N. Wakabayashi, M. Ai, K. Iijima, Y. Takada, O. Okuno, Infrared gold alloy brazing on Titanium and Ti#8211;6Al#8211;4 V Alloy surfaces and its application to removable prostho-dontics, J. Prosthodont. 8 (1999) 180#8211;187. [5] R.A. Zavanelli, G.E. Pessanha Henriques, I. Ferreira, J.M. De Almeida Rollo, Corrosion-fatigue life of commercially pure titanium and Ti#8211;6Al#8211;4 V alloys in different storage environments, J. Prosthet. Dent. 84 (2000) 274#8211;279. [6] R.R. Wang, Y. Li, In vitro evaluation of biocompatibility of experimental titanium alloys for dental restorations, J. Prosthet. Dent. 80 (1998) 495#8211;500. [7] M. Yoshinari, K. Matsuzaka, T. Inoue, Y. Oda, M. Shimono, Bio-functionalization of titanium surfaces for dental implants, Mater. Trans. 43 (2002) 2494#8211;2501. [8] Shibata T,Zhu Y C. The effect of film formation conditions on the structure and composition of anodic oxide films on titanium [J]. Corrosion Science,1995,37( 2) : 253#8212;270. [9] Torresi R M,Camara O R,De Pauli C P,et al. Hydrogen evolution reaction on anodic titanium oxide films[J]. Electrochimica Acta,1987,32( 9) : 1291#8212;1301. [10] Bjursten L M,Emanuelsson L,Ericson L E,et al. Method for ultrastructural studies of the intact tissue-metal interface [J]. Biomaterials,1990,11(8) : 596#8212;601. [11] Kelly E J. Anodic dissolution and passivation of titanium in acidic media III. chloride solutions [J]. Journal of the Electrochemical Society,1979,126( 12) :2064#8212;2075. [12] Schutz R W. 2003 FN speller award lecture: platinum group metal additions to titanium: a highly effective strategy for enhancing corrosion resistance [J].Corrosion,2003,59( 12) : 1043#8212;1057. [13] Schutz R W. Environmental behavior of beta titanium alloys [J]. JOM,1994,46( 7) : 24#8212;29. [14] Ohtsuka T,Masuda M,Sato N. Ellipsometric study of anodic oxide films on titanium in hydrochloric acid,sulfuric acid,and phosphate solution [J]. Journal of The Electrochemical Society,1985,132( 4) : 787#8212;792. [15] Popa M V,Demetrescu I,Vasilescu E,et al. Corrosion susceptibility of implant materials Ti-5Al-4V and Ti-6Al-4Fe in artificial extra-cellular fluids [J].Electrochimica Acta,2004,49( 13) : 2113#8212;2121. [16] Pan J,Thierry D,Leygraf C. Electrochemical impedance spectroscopy study of the passive oxide film on titanium for implant application [J]. Electrochimica Acta,1996,41( 7) : 1143#8212;1153.

3. 毕业设计(论文)进程安排

起讫日期 设计(论文)各阶段工作内容 2.20~3.10 选题、文献综述、翻译 3.11~3.18 准备实验原料、原材料和实验设备 3.19~4.8 性能测试与表征 5.1~5.31 试验数据整理分析、补充 6.1~6.19 论文撰写、答辩

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