Aluminum foil applicable to lithium ion battery and preparation method for aluminum foil
A lithium-ion battery and aluminum foil technology, which is applied in the field of metal aluminum, can solve the problems that the tensile strength and conductivity of aluminum materials cannot be satisfied, the cost of aluminum materials remains high, and the conductivity of aluminum alloys is affected, so as to increase the strength and mechanical properties of the aluminum alloy. Performance indicators, high cupping value, and good elongation
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[0048] see figure 1, the invention provides a kind of preparation method that is applicable to the aluminum foil of lithium ion battery, comprises:
[0049] S1. Preparation of rare earth aluminum master alloy ingots: put rare earth elements with a purity of ≥99% into a diamond grinder for grinding to obtain nano-rare earth materials with a particle size of 1-200nm, and combine the nano-rare earth materials with a purity of ≥99% and a copper content The aluminum powder with less than 0.005% is ground, mixed and stirred, and pressed into a powder cake according to the weight ratio of 1:900-1200, and then the powder cake is melted and cast into a rare earth aluminum master alloy ingot;
[0050] S2, adding the rare earth aluminum master alloy ingot and the aluminum ingot with a purity ≥ 99% in the smelting furnace in a weight ratio of 1:8-12, and smelting to obtain a billet;
[0051] Preferably, the melting condition is: 6 hours in a melting furnace at 700°C.
[0052] Smelting i...
Embodiment 1
[0108] 1. Preparation of rare earth aluminum master alloy ingots:
[0109] 1. Add praseodymium carbonate to 1-ethyl-3-methylimidazolium tricyanomate for dispersion, the weight ratio of praseodymium and 1-ethyl-3-methylimidazolium tricyanomate is 1:1 , the reaction temperature is 90°C, and carbon dioxide is introduced to obtain precipitate and ionic liquid B, and the generated gas is introduced into the soda lime absorption tank, and is absorbed by soda lime to make fertilizer;
[0110] 2. Put the precipitate and ionic liquid B into a diamond grinder for grinding, and grind for 1 hour to obtain nanomaterials with a particle size of 1-200nm;
[0111] 3. Distill the nanomaterials under reduced pressure to obtain nanoparticles;
[0112] 4. Wash the nanoparticles with deionized water, and heat and dry them at a temperature of 100°C;
[0113] 5. Grind the dried nanoparticles and aluminum powder, mix and stir, and press into a powder cake according to a weight ratio of 1:900. The a...
Embodiment 2
[0122] 1. Preparation of rare earth aluminum master alloy ingots:
[0123] 1. Add the ammonium salt of neodymium into 1-butyl-3-methylimidazolium hexafluorophosphate for dispersion, the weight ratio of neodymium and 1-butyl-3-methylimidazolium hexafluorophosphate is 1:1, The reaction temperature is 95°C, and ammonia gas is introduced to obtain precipitates and ionic liquid B. The generated gas is introduced into the soda lime absorption tank and absorbed by soda lime to make fertilizer;
[0124] 2. Put the precipitate and ionic liquid B into a diamond grinder for grinding, and grind for 2 hours to obtain nanomaterials with a particle size of 1-200nm;
[0125] 3. Distilling the nanomaterials under reduced pressure and extracting them to obtain nanoparticles.
[0126] 4. Wash the nanoparticles with deionized water, and heat and dry them at a temperature of 110°C
[0127] 5. Grind the dried nanoparticles and aluminum powder, mix and stir, and press into a powder cake according ...
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