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Effect of Annealing Process on Anode Discharge Performance of Aluminum-Air Batteries

机译:退火工艺对铝空气电池负极放电性能的影响

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This paper investigates the effect of annealing process on the discharge performance of aluminum air battery anode, the results show that. The annealing treatment after rolling can make the grain of aluminum anode be refined, and the surface of aluminum anode with lower morphology has Bi and Pb precipitation, resulting in pitting corrosion. With the increase of morphology, the element distribution is uniform, and the precipitated phase is dissolved in the aluminum matrix, and the corrosion performance is improved. At the same time, the fine grain reduces the internal potential difference of aluminum anode and improves the corrosion resistance of the anode. The microstructure of aluminum anode with large morphology variable becomes more uniform after annealing, which improves the corrosion resistance of aluminum anode. Compared with the aluminum anode with low morphology, the energy density and specific capacity of the anode with high morphology were increased by 584.35 Wh center dot kg-1 and 579.61 mAh center dot g-1, respectively, and the anode efficiency was also increased by 19.45. The anode efficiency of the high-variant sample was increased by up to 10.74 after annealing. The fine-crystalline aluminum anode exhibited higher discharge voltage and electrochemical performance than the coarse-crystalline aluminum anode at constant current density.
机译:本文研究了退火工艺对铝空气电池阳极放电性能的影响,结果表明。轧制后的退火处理可以使铝阳极的晶粒细化,形貌较低的铝阳极表面有Bi和Pb析出,导致点蚀。随着形貌的增加,元素分布均匀,析出相溶解在铝基体中,腐蚀性能提高。同时,细晶粒减小了铝阳极的内电位差,提高了阳极的耐腐蚀性。退火后形貌变大的铝阳极的显微组织变得更加均匀,提高了铝阳极的耐腐蚀性。与低形貌铝负极相比,高形貌阳极的能量密度和比容量分别提高了584.35 Wh中心点kg-1和579.61 mAh中心点g-1,阳极效率也提高了19.45%。退火后,高变异样品的阳极效率提高了10.74%。在恒定电流密度下,细结晶铝阳极比粗结晶铝阳极表现出更高的放电电压和电化学性能。

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