Method for assessing settleability and uniformity of lithium ion battery anode slurry
A technology for lithium-ion batteries and cathode materials, which can be used in the analysis of materials, by removing certain components, weighing, instruments, etc., to solve the problems of inconsistent internal resistance, non-uniformity, and large differences in physical properties of the battery cells.
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Embodiment 1
[0035] The components of lithium iron phosphate slurry, a positive electrode material for lithium ion batteries, are shown in Table 1, and the theoretical solid content is 42.00%.
[0036] Table 1 Lithium Iron Phosphate Slurry Components of Lithium-ion Battery Cathode Material
[0037] Element
conductive agent
binder
Proportion (%)
35.00
3.00
4.00
58.00
[0038] A method for evaluating the sedimentation and uniformity of the positive electrode material lithium iron phosphate slurry for lithium ion batteries, comprising the following steps:
[0039] (1) Take the lithium iron phosphate slurry, which is the positive electrode material of lithium-ion batteries, and stir it evenly. Take 3 samples randomly from different positions in the slurry tank, namely A, B, and C. Mark the samples and perform centrifugation at a speed of 2000rmp , the centrifugation time is 30min;
[0040] (2) Divide...
Embodiment 2
[0052] The components of lithium iron phosphate slurry, a positive electrode material for lithium ion batteries, are shown in Table 3, and the theoretical solid content is 45.00%.
[0053] Table 3 Lithium Iron Phosphate Slurry Components of Lithium-ion Battery Cathode Material
[0054] Element
conductive agent
binder
Proportion (%)
38.00
3.00
4.00
55.00
[0055] A method for evaluating the sedimentation and uniformity of the positive electrode material lithium iron phosphate slurry for lithium ion batteries, comprising the following steps:
[0056] (1) Take the lithium iron phosphate slurry, which is the positive electrode material of lithium-ion batteries, and stir it evenly. Take 3 samples randomly from different positions in the slurry tank, namely A, B, and C. Mark the samples and perform centrifugation at a speed of 3000rmp , the centrifugation time is 10min;
[0057] (2) Divi...
Embodiment 3
[0070] The composition of lithium iron phosphate slurry, a positive electrode material for lithium ion batteries, is shown in Table 5, and its theoretical solid content is 40.00%.
[0071] Table 5 Lithium Iron Phosphate Slurry Components of Lithium-ion Battery Cathode Material
[0072] Element
conductive agent
binder
Proportion (%)
33.00
3.00
4.00
60.00
[0073] A method for evaluating the sedimentation and uniformity of the positive electrode material lithium iron phosphate slurry for lithium ion batteries, comprising the following steps:
[0074] (1) Take the lithium iron phosphate slurry, which is the positive electrode material of lithium-ion batteries, and stir it evenly. Take 3 samples randomly from different positions in the slurry tank, namely A, B, and C. Mark the samples and perform centrifugation at a speed of 1000rmp , the centrifugation time is 30min;
[0075] (2) Divi...
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