Silicon carbide ceramic preform, aluminum-based silicon carbide ceramic material, and preparation method of silicon carbide ceramic preform
A silicon carbide ceramic and aluminum-based silicon carbide technology, which is applied in the field of silicon carbide ceramic preform and its preparation, aluminum-based silicon carbide ceramic material and its preparation field, can solve the problem of large shrinkage, low strength and poor structural uniformity of ceramic green body. problems, to achieve the effects of reducing environmental hazards, improving yield, and increasing strength
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[0048] Specifically, the embodiment of the present invention provides a method for preparing a silicon carbide ceramic preform, which mainly adopts a gel injection molding process, such as figure 1 As shown, it mainly includes the preparation of raw material slurry, adding initiator to the raw material slurry, vacuum degassing, injection molding curing to polymerize monomers into macromolecular gels, demolding drying, and sintering treatment steps, which specifically include the following :
[0049] 1) The raw materials for preparing the silicon carbide ceramic preform are uniformly mixed to prepare a raw material slurry. Among them, the raw materials for preparing the silicon carbide ceramic preform include silicon carbide, dispersant, organic monomer and water.
[0050] In this step, the volume ratio of silicon carbide to raw material slurry is (40-70):100. The mass ratio of dispersant to silicon carbide is (0.5-2):100. The mass ratio of organic monomer to water is 1:5-1:10.
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Example Embodiment
[0076] Example 1
[0077] Prepare a 65% volume fraction of silicon carbide preform (here, 65% volume fraction refers to the volume fraction of silicon carbide in the silicon carbide preform, the same applies to the following); the specific steps are as follows:
[0078] 1. Add 208.6 grams of silicon carbide particles with a particle size of 3-20 microns, 4 grams of acrylamide monomer, 1 gram of methylene bisacrylamide, 30 grams of water, and 2 grams of ammonia into the stirring tank, and stir for 24 hours to obtain Raw material slurry.
[0079] 2. Add 1.2 g of azobis-isoheptacyanide to the raw material slurry, and stir for 30 minutes to obtain a ceramic slurry.
[0080] 3. Place the ceramic slurry in a vacuum degassing tank and perform vacuum degassing of the ceramic slurry; among them, keep the vacuum in the vacuum degassing tank at 5×10 -2 Pa, the vacuum degassing time is 5 minutes.
[0081] 4. Pour the vacuum degassed ceramic slurry into a non-porous mold, and place it in an oven at...
Example Embodiment
[0083] Example 2
[0084] Prepare a silicon carbide preform with a volume fraction of 60%; the specific steps are as follows:
[0085] 1. Add 1926 grams of silicon carbide particles with a particle size of 10 microns, 66 grams of carbon powder, 40 grams of acrylamide monomer, 10 grams of methylene bisacrylamide, 320 grams of water, and 19 grams of ammonia into the mixing tank and stir. After 24 hours, a raw material slurry was obtained.
[0086] 2. Add 11 grams of azobis-isoheptacyanide to the raw material slurry and stir for 30 minutes to obtain a ceramic slurry.
[0087] 3. Place the ceramic slurry in a vacuum degassing tank and perform vacuum degassing of the ceramic slurry; among them, keep the vacuum in the vacuum degassing tank at 5×10 -6 Pa, the vacuum degassing time is 5 minutes.
[0088] 4. Pour the vacuum degassed ceramic slurry into a non-porous mold, and place it in an oven at 70°C for 3 hours to keep the ceramic slurry solidified and set, and then place it in the dry phase...
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