Calcium-aluminum-lead alloy for battery plate and preparation method thereof
A battery electrode, lead alloy technology, applied in battery electrodes, circuits, electrical components, etc., can solve problems such as reducing smelting costs, and achieve the effects of long storage time, less oxidation, and improved stability
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example 1
[0043] Under the protection of a continuous argon atmosphere, take 2.2kg of pure aluminum ingot, heat it up to 900°C in an induction furnace to melt it, and then add 6.8kg of pure calcium block to it while stirring, and control the temperature of mixed smelting at 930°C. After it is completely melted, continue to stir and add 1.0kg of lead block. The temperature of the mixed smelting is controlled at 950°C, and it is stirred for 8 minutes until the alloy is completely melted. Then, it is cast into an intermediate alloy through a casting device, cooled naturally in the air and made into a finished intermediate alloy. , put into storage after detection and weighing. Its composition and content are: Ca: 68wt%, Al: 22wt%, Pb10wt%.
example 2
[0045] Under the protection of a continuous argon atmosphere, take 2.5kg of pure aluminum ingot, heat it up to 900°C in an induction furnace to melt it, and then add 7.0kg of pure calcium block to it while stirring, and control the temperature of mixed smelting at 950°C. After it is completely melted, continue to stir and add 0.5kg of lead block. The temperature of the mixed smelting is controlled at 980°C, and stirred for 10 minutes until the alloy is completely melted. Then, it is cast into an intermediate alloy through a casting device, cooled naturally in the air and made into a finished intermediate alloy. , put into storage after detection and weighing. Its composition and content are: Ca: 70wt%, Al: 25wt%, Pb: 5wt%.
example 3
[0047] Under the protection of a continuous argon atmosphere, take 1.0kg of pure aluminum ingot, heat it up to 900°C in an induction furnace to melt it, and then add 8.2kg of pure calcium block to it while stirring, and control the temperature of mixed smelting at 980°C. After it is completely melted, continue to stir and add 0.8kg of lead weight. The temperature of mixing and smelting is controlled at 1000°C. Stir for 8 minutes until the alloy is completely melted. At this time, carry out reverse stirring for 3 minutes. Then it is cast into master alloy by casting device, cooled naturally in the air and made into finished master alloy, which is checked and weighed before storage. Its composition and content are: Ca: 82wt%, Al: 13wt%, Pb: 5wt%.
[0048] Although the three embodiments all use argon as the shielding gas, it is due to the high cost performance of argon. In the case of higher requirements for product accuracy, other inert gases can be selected. In order to coopera...
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