Optimizing thin electrode tubular sealed power lead-acid battery and its manufacturing method
A lead-acid battery, electrode tube technology, applied in lead-acid battery, lead-acid battery construction, electrode carrier/current collector, etc., can solve the problem of low density of positive plate grid alloy, low amount of active material, and short battery life. and other problems, to achieve the effect of improving utilization rate and battery capacity, enhancing low-temperature discharge performance, and prolonging service life
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Embodiment 1
[0027] a, the components of the rare earth alloy and their weight fractions are as follows: 0.10% lanthanum, 0.06% cerium, 1.5% antimony, 0.15% arsenic, 0.16% tin, 0.005% selenium, 0.004% sulfur, 0.04% copper, and the rest are lead; The rare earth elements in the raw materials were melted into the lead at 520°C to prepare the positive grid; the positive grid was injected with high pressure, the injection pressure was 300KPa, and the diameter of the lead bar of the grid was 1.5mm.
[0028] b. Put the positive plate grid on a sheath, polyester pipe (diameter 6.2mm), and then put it on the powder filling machine to fill the powder, then hit the bottom cover, soak in water, cure and dry, and make the positive plate;
[0029] c, the negative plate is made of the following raw materials in mass parts: 100 parts of lead powder (the oxidation amount of lead powder is 80%, and the apparent density is 1.80), 0.6 part of barium sulfate, 0.4 part of humic acid, 0.3 part of synthetic tannin...
Embodiment 2
[0037] a, the components of the rare earth alloy and their weight fractions are as follows: 0.20% lanthanum, 0.15% cerium, 2.0% antimony, 0.1% arsenic, 0.20% tin, 0.017% selenium, 0.006% sulfur, 0.06% copper, and the rest are lead; The rare earth elements in the raw materials were melted into lead at 500°C to prepare the positive grid; the positive grid was injected by high pressure, the injection pressure was 500KPa, and the diameter of the grid lead bar was 1.5mm.
[0038] b. Put the positive plate grid on a sheath, polyester pipe (diameter 4.0mm), and then put it on the powder filling machine to fill the powder, then hit the bottom cover, soak in water, cure and dry, and make the positive plate;
[0039] c, the negative plate is made of the following raw materials in mass parts: 100 parts of lead powder (the oxidation amount of lead powder is 73%, and the apparent density is 1.70), 0.8 part of barium sulfate, 0.7 part of humic acid, 0.5 part of synthetic tannin extract, 0.3...
Embodiment 3
[0044]a, the components of the rare earth alloy and their weight fractions are as follows: 0.15% lanthanum, 0.105% cerium, 1.75% antimony, 0.15% arsenic, 0.18% tin, 0.011% selenium, 0.005% sulfur, 0.05% copper, and the rest are lead; The rare earth elements in the raw materials were melted into lead at 550°C to prepare positive grids; the positive grids were injected with high pressure, the injection pressure was 400KPa, and the diameter of the grid lead bars was 2.5mm.
[0045] b. Put the positive plate grid on a sheath, polyester pipe (diameter 7.0mm), and then put it on the powder filling machine to fill the powder, then hit the bottom cover, soak in water, cure and dry, and make the positive plate;
[0046] c, the negative plate is made of the following raw materials in parts by mass: 100 parts of lead powder (the oxidation amount of lead powder is 75%, and the apparent density is 1.75), 0.7 part of barium sulfate, 0.55 part of humic acid, 0.4 part of synthetic tannin extra...
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