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【求助】求助三篇英文文献 已有3人参与
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1、S. Akavipat, C. E. Habermann, P L. Hagans, E. B. Hale, in E. McCafferty, C. R.Clayton, and J.Oudar (eds.), Proc. Int. Symp. on Fundamental Aspects of Corrosion Protection by Surface Modification, Electrochemical Society, NJ, 1984, pp. 52-61 2、S. Akavipat, E. B. Hale, C. E. Habermann, P L. Hagans, Effects of iron implantation on the aqueous corrosion magnesium. Materials Science and Engineering, 69 (1985) 311-316 3、I. Nakatsugawa, R. Martin, E. J. Knystautas, Improving corrosion resistance of AZ91D magnesium alloy by nitrogen ion implantation. Corrosion, 52 (1996) 921-926 一篇10个吧,别嫌少啊,多谢啦 |
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zigo(金币+1):鼓励新虫! 2010-04-20 10:41
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第一篇: Accession number: 1986070106265 Title: ELECTROCHEMICAL AND AUGER MEASUREMENTS ON BORON IMPLANTED MAGNESIUM. Authors: Akavipat, S.1 ; Habermann, C.E.1 ; Hagans, P.L.1 ; Hale, E.B.1 Author affiliation: 1 Univ of Missouri-Rolla, Rolla, MO,, USA, Univ of Missouri-Rolla, Rolla, MO, USA Corresponding author: Akavipat, S. Source title: Proceedings - The Electrochemical Society Abbreviated source title: Proc Electrochem Soc Volume: 84-3 Issue date: 1984 Publication year: 1984 Pages: 52-61 Language: English ISSN: 01616374 CODEN: PESODO Document type: Conference article (CA) Conference name: Fundamental Aspects of Corrosion Protection by Surface Modification. Symposium held at the Fall Meeting of the Electrochemical Society. Conference location: Washington, DC, USA Conference code: 4489 Sponsor: Electrochemical Soc, Corrosion Div, Pennington, NJ, USA; European Federation of Corrosion Publisher: Electrochemical Soc, Pennington, NJ, USA Abstract: Magnesium and a magnesium alloy (AZ91C) have been ion implanted to modify the corrosion properties of the metals. To assess the influence of the implantation, corrosion testing was done by anodic polarization in an aqueous chloride solution (a pH 9. 3 buffered solution of borated boric acid containing 1000 ppm of NaCl). Significant improvement in the polarization curves of both metals were found when boron was implanted to a typical dose of 5 multiplied by 10**1**6B** plus /cm**2 at 100 keV. In the pure magnesium samples, the open circuit potential was shifted plus 200 mV. Also, there was more than an order of magnitude improvement in the current density at passivation. In the AZ alloy samples which already have improved corrosion resistance, further large shifts due to the boron implantations were also seen. Abstract type: (Edited Abstract) Number of references: 7 Main heading: MAGNESIUM AND ALLOYS Controlled terms: BORON - Physical Chemistry - METALS AND ALLOYS - Corrosion Resisting Uncontrolled terms: ANODIC POLARIZATION - AUGER SPECTRA - BORON IMPLANTATION - CORROSION PROTECTION - MAGNESIUM IMPLANTATION - PASSIVATION Classification code: 531 Metallurgy and Metallography - 539 Metals Corrosion and Protection; Metal Plating - 542 Beryllium, Lithium, Magnesium, Titanium and Other Light Metals and Alloys - 549 Nonferrous Metals and Alloys - 801 Chemistry - 802 Chemical Apparatus and Plants; Unit Operations; Unit Processes Database: Compendex Compilation and indexing terms, © 2009 Elsevier Inc. |
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