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The influence of calcium, tin and grid thickness on corrosion-induced grid growth

机译:钙,锡和格栅厚度对腐蚀引起的格栅生长的影响

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Antimony-free lead alloys are the choice material for the positive and negative grids of valves-regulated, stationary, lead/ acid (VRLA) batteries. A lead alloy suitable for this task is a ternary lead-calcium-tin alloy with additions of aluminium. The influence of two levels of calcium and tin, as well as the grid thickness, on the corrosion rate (i.e., growth) is investigated through tests on bare and pasted grids. The results show that a combination of a low calcium (≈ 0.07 wt.%) and a high tin ( ≈ 0.7 wt.%) content in the alloy, together with thick grids (≈ 4 mm), yields low growth-rates that are adequate for long-life VRLA batteries (3-6% growth in 54 weeks at + 60℃). The microstructure of the alloy, i.e., the number of grain boundaries per unit volume determines the magnitude of the resulting corrosion attack. Lead-calcium-tin-aluminium alloys with an approximate composition of 0.07 wt.% Ca and 0.7 wt.% Sn have a lower number of grain boundaries when compared with alloys of the same system with 0.09 wt.% Ca and 0.3 wt.% Sn. Although a penetrating grain-boundary attack is observed with the Pb-0.07wt.%Ca-0.7wt.%Sn alloy, its overall performance, in terms of resulting VRLA battery life, is far superior to that of the Pb-0.09wt.%Ca-0.3wt.%Sn alloy.
机译:无锑铅合金是阀控固定式铅/酸(VRLA)电池正负极板的首选材料。适用于该任务的铅合金是添加了铝的三元铅钙锡合金。通过在裸露和粘贴的网格上进行测试,研究了钙和锡两个含量水平以及网格厚度对腐蚀速率(即生长)的影响。结果表明,合金中低钙(≈0.07 wt。%)和高锡(≈0.7 wt。%)含量以及厚网格(≈4 mm)的组合产生了低的生长速率。适用于长寿命VRLA电池(+ 60℃在54周内增长3-6%)。合金的微观结构,即每单位体积的晶界数量决定了产生的腐蚀攻击的程度。与具有0.09 wt%Ca和0.3 wt。%的同一系统的合金相比,具有约0.07 wt。%Ca和0.7 wt。%Sn的铅-钙-锡-铝合金的晶界数量更少锡尽管在Pb-0.07wt。%Ca-0.7wt。%Sn合金中观察到穿透性的晶界侵蚀,但就VRLA电池寿命而言,其整体性能远远优于Pb-0.09wt。 %Ca-0.3wt。%Sn合金。

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