Pug for high-pressure ceramic plate and preparation technology of high-pressure ceramic plate
A technology for high-pressure ceramics and preparation technology, which is applied in the field of mud for high-pressure ceramic plates and the preparation technology of high-voltage ceramic plates, which can solve the problems of limited stability of finished products and unstable mud formula, so as to achieve good stability and not easy Good fracture and bonding effect
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Examples
Embodiment 1
[0037] A mud material for high-pressure ceramic plates, which contains components and the mass parts of each component are as follows:
[0038] Silica: 62.39%;
[0039] Aluminum oxide: 27.19%;
[0040] Ferric oxide: 0.10%;
[0042] Magnesium oxide: 0.98%;
[0043] Potassium oxide: 2.39%;
[0044] Sodium oxide: 1.85%;
[0045] Titanium dioxide: 0.02%.
[0046] Burn reduction: 4.69%.
[0047] A preparation process of a high-voltage ceramic plate, the steps contained in the process are as follows:
[0048] S1: Prepare a slab by using the mud material for high-pressure ceramic plates in Example 1;
[0049] S2: Then, through trimming, glazing, bisque firing, painting, protective glaze spraying and firing in sequence, the required high-voltage ceramic plate is obtained; among them, the specific process of trimming is to use a blade to cut off the periphery of the body; manual glaze is used Craft glazing.
[0050] In step S1, the mud is ball m...
Embodiment 2
[0057] A mud material for high-pressure ceramic plates, which contains components and the mass parts of each component are as follows:
[0058] Silica: 55.8%;
[0059] Aluminum oxide: 30%;
[0060] Ferric oxide: 0.2%;
[0062] Magnesium oxide: 2%;
[0063] Potassium oxide: 3%;
[0064] Sodium oxide: 3%;
[0065] Titanium dioxide: 0.5%;
[0066] Burn reduction: 5%.
[0067] A preparation process of a high-voltage ceramic plate, the steps contained in the process are as follows:
[0068] S1: Preparing a slab using mud for high-pressure ceramic plates;
[0069] S2: Then, through trimming, glazing, bisque firing, painting, protective glaze spraying and firing in sequence, the required high-voltage ceramic plate is obtained; among them, the specific process of trimming is to use a blade to cut off the periphery of the body; manual glaze is used Craft glazing.
[0070] In step S1, the mud is ball milled, sieved (above 200 mesh), iron removed, ...
Embodiment 3
[0077] A mud material for high-pressure ceramic plates, which contains components and the mass parts of each component are as follows:
[0078] Silica: 60%;
[0079] Aluminum oxide: 30%;
[0080] Ferric oxide: 0.15%;
[0082] Magnesium oxide: 2%;
[0083] Potassium oxide: 2%;
[0084] Sodium oxide: 2%;
[0085] Titanium dioxide: 0.5%;
[0086] Burn reduction: 2.95%.
[0087] A preparation process of a high-voltage ceramic plate, the steps contained in the process are as follows:
[0088] S1: preparing a slab by using the mud for high-pressure ceramic plates as claimed in claim 1 or 2;
[0089] S2: Then, through trimming, glazing, bisque firing, painting, protective glaze spraying and firing in sequence, the required high-voltage ceramic plate is obtained; among them, the specific process of trimming is to use a blade to cut off the periphery of the body; manual glaze is used Craft glazing.
[0090] In step S1, the mud is ball milled, sieve...
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