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Microgalvanic Current Mapping of Magnesium/Aluminum Galvanic Couple by Scanning Vibrating Electrode Technique (SVET)

机译:通过扫描振动电极技术(SVET)微钙常压镁/铝电器族耦合的映射

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Many magnesium alloys exhibit microgalvanic corrosion due to anodic and cathodic reactions that occur at discrete phases. We used the scanning vibrating electrode technique (SVET) to map the local corrosion current distribution profile of specially designed magnesium and aluminum galvanic couples. We studied the effect of anode (Mg) to cathode (Al) area ratio (A/C = 1:9, 3:7 and 1:1) and the effect of electrolyte concentration (sodium chloride solutions, 10, 30, and 280 mM). The galvanic current density is mapped for different immersion time intervals (t=0 and 1 hour). The SVET response clearly showed that anodic and cathodic current densities on the magnesium and aluminum (Mg-Al) galvanic couple, respectively. The current density decreased with increasing anode to cathode surface area ratio, and at a given ratio, increased with increasing concentration of the sodium chloride solution. Our results showed that SVET can provide finite current/potential details of the microgalvanic activities within magnesium alloys, which are not possible with conventional electrochemical measurements, and it is an excellent measurement tool for understanding microgalvanic corrosion of magnesium alloys.
机译:许多镁合金具有microgalvanic腐蚀由于发生在离散相位阳极和阴极反应。我们使用的扫描振动电极技术(SVET)来映射专门设计的镁和铝的电偶的局部腐蚀电流分布轮廓。我们研究了阳极的(Mg)的阴极(Al)的面积比(A / C = 1:9,3:7至1:1)的影响280和电解质浓度(氯化钠溶液,10,30的作用,和毫米)。电偶电流密度被映射为不同的浸泡时间间隔(t = 0和1小时)。所述SVET响应清楚地表明,分别在镁和铝(镁铝)电偶,阳极和阴极电流密度。电流密度随阳极到阴极表面面积比减小,并且在给定的比率,用氯化钠溶液浓度的增加增加。我们的研究结果表明,SVET可以提供有限的电流/镁合金内的microgalvanic活动,这是不可能用常规电化学测量的潜在细节,并且它是用于理解镁合金的腐蚀microgalvanic优异的测量工具。

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