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Effect of quenching after solidification on hardness and electrochemical behavior of a Pb-0.09%Ca-1.23%Sn alloy

机译:凝固后淬火对Pb-0.09%Ca-1.23%Sn合金硬度和电化学行为的影响

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摘要

This work studies the effect of water spraying process as a quenching method on hardenability and initial electrochemical properties of a Pb-0.09%Ca-1.23%Sn positive grid alloy through a statistical approach. The nozzle diameter, quenching temperature and aging time are considered to have an impact on the alloy hardness whereas two first factors are believed to account for electrochemical behavior. Response surface method (RSM) is used to design the experiments and analyze the data. The results show that the quenched specimen acquires an acceptable hardness at initial aging time so that its hardness is higher than the air-cooled sample after a 4-day aging at room temperature. From statistically analyzing the data, it has been found that aging time increases the hardness although the water temperature and the nozzle diameter in the studied range have no considerable effect. In addition, no significant change in PbSO4/PbO2and oxygen evolution potential of the alloy is observed with water spraying, however, a decrease in passivity current density is pronounced as a consequence of lowering water temperature.
机译:这项工作通过统计方法研究了喷水工艺作为淬火方法对Pb-0.09%Ca-1.23%Sn正极网格合金的淬透性和初始电化学性能的影响。认为喷嘴直径,淬火温度和时效时间对合金硬度有影响,而据信两个第一因素可解释电化学行为。响应面法(RSM)用于设计实验和分析数据。结果表明,淬火后的试样在初始时效时具有可接受的硬度,因此其硬度高于在室温下老化4天后的风冷试样。通过对数据的统计分析发现,尽管水温和喷嘴直径在所研究的范围内没有显着影响,但时效时间增加了硬度。另外,喷水未观察到合金中PbSO4 / PbO2和析氧势的显着变化,但是,由于水温降低,钝化电流密度明显降低。

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