Cathode powder of cylindrical basic zinc-manganese battery and preparation method of cathode powder
A zinc-manganese battery, cylindrical technology, applied in the direction of battery electrodes, circuits, electrical components, etc., can solve the problems of insufficient high-current discharge performance, unsatisfactory long-term shooting, and insufficient positive electrode reaction area, etc., to achieve high current Discharge performance, reduced discharge density, and low raw material cost
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Embodiment 1
[0014] Embodiment 1 The preparation method of cylindrical alkaline zinc-manganese battery positive electrode powder of the present invention
[0015] Weigh 40Kg of electrolytic manganese dioxide, 3Kg of graphite powder, and 0.1Kg of calcium stearate. Production steps: Mix in a mixer at room temperature for 5 minutes, add potassium hydroxide (40%wt) 2.5Kg, reagent ethanol 2Kg, wet mix for 5 minutes, then roll into sheets (discharge temperature 60-70°C), granulate, In the sieving process, positive electrode powder with a particle size of 20-80 meshes is obtained, which is stored for use.
[0016] Compared with the conventional production method, 1-5 parts of ethanol is added to the positive electrode component. During the powder making process, the ethanol volatilizes, and a pore structure is formed on the surface of the positive electrode powder particles, thereby forming porous particles, which is conducive to increasing the positive electrode reaction area. Reduce discharge ...
experiment example 1
[0017] Experimental example 1 The comparison experiment between the technology of the cylindrical alkaline zinc-manganese battery positive electrode powder of the present invention and the original technology
[0018] 10Ω continuous play to 0.9V 3.9Ω continuous play to 0.9V 1.8Ω Pulse to 0.9V 1000mA pulse to 0.9V 3.9Ω continuous amplifier to 0.8V New recipe process 19.15 hours 385.0 minutes 680.5 times 400 times 450.5 minutes Original recipe process 19.04 hours 368.1 minutes 611.3 times 353 times 393.5 minutes
[0019] The contrast experiment of the technique of the positive electrode additive of cylindrical alkaline zinc-manganese battery of the present invention and the original technique of table 1
[0020] Through the experiments in Table 1, it can be found that the new formula process of the present invention can improve the high-current discharge performance, and the discharge time and discharge times are significa...
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