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Influence of Sn addition on the corrosion resistance and recharge capacity of Pb-1, 5wt%Sn alloy for positive grids of lead acid batteries

机译:SN添加对PB-1,5wt%Sn合金的耐腐蚀性和再充电容量的影响,用于铅酸电池的正网

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The present work aimed to evaluate the corrosion process of the Pb and Pb-1,5wt%Sn alloy under cycling conditions in sulfuric acid, in order to understand the influence of Sn on the corrosion resistance and recharge capacity for positives grids of lead-acid batteries. The study samples were prepared by casting process. The microstructure of the materials was evaluated by optical microscopy. Cyclic voltammetry tests for simulation of charge and discharge of positive electrode in accumulators were carried out in sulfuric acid (5M) in the potential range of 1.3 V to 2.2 V (vs SCE), totaling 400 cycles. The morphology and composition of the corrosion product deposits were analyzed by scanning electronic microscopy (SEM) and X-ray diffraction (XRD), respectively. Weight loss, electrochemical impedance spectroscopy (EIS) and SEM analysis were performed to evaluate the effect of corrosion process on the surface of the analyzed materials. The study showed that Sn addition promoted a doping effect on the formed corrosion deposits layers, increasing the charging efficiency of the accumulator and decreasing the weight loss by corrosion. The Pb1.5wt%Sn alloy showed to be more susceptible to the intergranular corrosion process and pitting corrosion in the grain compared to pure Pb.
机译:目前的作品,旨在评估硫酸中循环条件下Pb和P​​b-1,5wt%sn合金的腐蚀方法,以了解Sn对铅酸阳性网格耐腐蚀性和充电能力的影响电池。通过铸造方法制备研究样品。通过光学显微镜评估材料的微观结构。用于模拟蓄能器中的充电和排出的循环伏安法试验在蓄州(5M)中在1.3V至2.2V(VS SCE)的潜在范围内进行,总计400次循环。通过扫描电子显微镜(SEM)和X射线衍射(XRD)分析腐蚀产物沉积物的形态和组成。重量损失,电化学阻抗光谱(EIS)和SEM分析进行了评价腐蚀过程对分析材料表面的影响。该研究表明,SN添加促进了对形成的腐蚀沉积层的掺杂效果,提高了蓄能器的充电效率并通过腐蚀降低了重量损失。与纯Pb相比,PB1.5wt%Sn合金显示晶粒中的晶粒腐蚀过程和蚀腐蚀更容易受到影响。

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