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Effect of Lithium on the Discharge and Corrosion Behavior of Mg-3wt.% Al Alloy as the Anode for Seawater Activated Battery

机译:锂对Mg-3wt的放电和腐蚀行为的影响。%Al合金作为海水激活电池阳极

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摘要

The discharge and corrosion behavior of Mg-3wt.% Al alloys added with different contents of lithium in 3.5wt.% NaCl aqueous solution is studied by electrochemical methods and microstructure characterization. The results indicate that adding 4wt.% lithium severely promotes the self-corrosion and the addition of 12wt.% lithium is not valuable to the spalling of discharge products. In contrast, doping Mg-3wt.% Al with 8wt.% lithium negatively shifts the discharge potentials and inhibits the self-discharge, attributed to the dual-phase structure of -Mg plus -Li that removes the discharge products and favors the uniform dissolution in the course of discharge. Moreover, the multi-pass rolling with 40% reduction could tailor the microstructure of Mg-3wt.% Al-8wt.% Li alloy and further enhance its discharge activity, even though the corrosion resistance is slightly reduced. This means that the rolled Mg-3wt.% Al-8wt.% Li sheet is suitable to serve as the anode for seawater activated battery.
机译:Mg-3wt的放电和腐蚀行为。用电化学方法和微观结构表征研究了3.5wt的不同含量的锂含量的%al合金。 结果表明,添加4wt。%锂严重促进自腐蚀,加入12wt。%锂对放电产品的剥落是无价值的。 相反,掺杂Mg-3wt。%Al,8wt。%锂负极地移位放电电位并抑制自放电,归因于-mg Plus -li的双相结构,其除去放电产品并促使均匀溶解 在出院过程中。 此外,减少40%的多通轧可能量身定制Mg-3wt的微观结构。%锂合金,也可以进一步增强其放电活动,即使耐腐蚀性略微降低。 这意味着轧制的Mg-3wt。%al-8wt。%li板适合用作海水活性电池的阳极。

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