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Corrosion of Silver-Cored Co-20Cr-35Ni-10Mo Composite for Networked Neuroprosthetic System

机译:联网神经修复系统的银芯Co-20Cr-35Ni-10Mo复合材料的腐蚀

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摘要

Corrosion behavior of a silver-cored composite wire with Co-based alloy Co-20Cr-35Ni-10Mo outer tube and a Silver core in vitro conditions was investigated. The electrochemical effect of the component materials on the overall corrosion behavior of the composite wire was elucidated. The formation of silver chloride corrosion product on the corroding silver core limited ionic transport therefore restricted further dissolution at the silver metal surface. Galvanic action between a Co-20Cr-35Ni-10Mo cathode and a silver anode was examined. Dissolution rate of the silver core in a composite wire obtained from immersion tests in a physiological solution of 9 g/L NaCl at 37° C was approximately 22 µm/y, i.e., 0.28 µg/y silver dissolved for a 37-µn-diameter silver core. Nearly all of the silver dissolved precipitate as silver chloride, i.e., approximately 0.37 µg/y. [PUBLICATION ABSTRACT]
机译:研究了含钴基合金Co-20Cr-35Ni-10Mo外管和银芯的银芯复合线的体外腐蚀行为。阐明了组成材料对复合线材整体腐蚀行为的电化学影响。在腐蚀的银芯上形成氯化银腐蚀产物会限制离子迁移,因此会限制在银金属表面的进一步溶解。研究了Co-20Cr-35Ni-10Mo阴极与银阳极之间的电作用。通过在37°C的9 g / L NaCl生理溶液中进行浸没测试获得的复合线材中银芯的溶解速率约为22 µm / y,即,直径37 µn的银溶解量为0.28 µg / y。银芯。几乎所有溶解的银以氯化银的形式沉淀,即约0.37μg/ y。 [出版物摘要]

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  • 来源
    《Corrosion》 |2011年第4期|p.1-10|共10页
  • 作者

    H M Ha J H Payer;

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    H.M. Ha[double dagger]* and J.H. Payer**Submltted for publication June 18, 2010, in revised form, October 10, 2010.[double dagger] Corresponding author. E-mail: hmh9@case.edu.* Department of Materials Science and Engineering, Case Western Reserve University, 10900 Euclid Ave.. Cleveland, OH 441067204.** Corrosion and Reliability Engineering, The Akron University, Akron, OH 44325-9006.,;

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  • 入库时间 2022-08-17 13:45:34

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