A kind of composite fiber sagger for the synthesis of positive electrode material of lithium ion battery and preparation method thereof
A technology of lithium ion battery and positive electrode material is applied in the field of composite fiber saggar for synthesizing positive electrode material of lithium ion battery and its preparation field, which can solve the problems of component segregation, positive electrode material pollution, affecting the electrochemical performance of positive electrode material and the like.
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Embodiment 1
[0027] Step 1: Prepare 15 parts of mullite, 5 parts of fiber mullite, 40 parts of cordierite, 15 parts of magnesium aluminum spinel, 5 parts of zircon, 2 parts of ceria, 10 parts of fiber alumina, fiber oxide 3 parts of magnesium, 5 parts of zirconia-yttrium oxide fibers are used as saggar raw materials, and then 5 parts of yellow dextrin of the total mass of sagger raw materials are added as a binding agent;
[0028] Step 2: The raw materials prepared in step 1 are mixed and pulped with deionized water as the medium. The amount of deionized water is 6 parts of the total mass of the sagger raw materials. After the mixed slurry is stirred evenly, it is stale for 24 hours. Then the slurry is pressed into a sagger green body through a molding device;
[0029] Step 3: Dry the green body of the sagger at room temperature for 24 hours, then dry it to keep the water content at about 1%, and then sinter it at 1320° C. for 2 hours to finally obtain the finished sagger.
Embodiment 2
[0031] Step 1: Prepare 20 parts of mullite, 5 parts of fiber mullite, 30 parts of cordierite, 20 parts of magnesium aluminum spinel, 5 parts of zircon, 3 parts of ceria, 7 parts of fiber alumina, fiber oxide 3 parts of magnesium, 7 parts of zirconia-yttrium oxide fibers are used as saggar raw materials, and then 5 parts of yellow dextrin of the total mass of sagger raw materials are added as a binding agent;
[0032] Step 2: The raw materials prepared in step 1 are mixed and pulped with deionized water as the medium. The amount of deionized water is 6 parts of the total mass of the sagger raw materials. After the mixed slurry is stirred evenly, it is stale for 24 hours. Then the slurry is pressed into a sagger green body through a molding device;
[0033] Step 3: Dry the green body of the sagger at room temperature for 24 hours, then dry it to keep the water content at about 1%, and then sinter it at 1330° C. for 4 hours to finally obtain the finished sagger.
Embodiment 3
[0035] Step 1: Prepare 5 parts of mullite, 8 parts of fiber mullite, 50 parts of cordierite, 10 parts of magnesium aluminum spinel, 8 parts of zircon, 3 parts of ceria, 5 parts of fiber alumina, fiber oxidation 1 part of magnesium, 10 parts of zirconia-yttrium oxide fibers are used as sagger raw materials, and then 5 parts of yellow dextrin of the total mass of sagger raw materials are added as a binding agent;
[0036] Step 2: The raw materials prepared in step 1 are mixed and pulped with deionized water as the medium. The amount of deionized water is 6 parts of the total mass of the sagger raw materials. After the mixed slurry is stirred evenly, it is stale for 24 hours. Then the slurry is pressed into a sagger green body through a molding device;
[0037] Step 3: Dry the green body of the sagger at room temperature for 24 hours, then dry it to keep the water content at about 1%, and then sinter it at 1340° C. for 3 hours to finally obtain the finished sagger.
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