A preparation method of high-toughness titanium silicon carbide-silicon carbide composite ceramic special-shaped parts
A technology of multi-phase ceramics and titanium silicon carbide, which is applied in the direction of ceramic forming lining, coating, etc., can solve the problems of difficult to realize the preparation of complex-shaped silicon carbide products, high sintering temperature and high processing difficulty, and achieve low sintering temperature and shorten production. process, the effect of reducing production costs
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Embodiment 1
[0034] 1) disperse 110g carbon black, 55g titanium carbide powder (average particle diameter 2 microns), 22g titanium powder (average particle diameter 3 microns) and 4g polyvinyl alcohol, 6g sodium carboxymethyl cellulose in deionized water, then Ball milling for 24h to obtain ceramic slurry;
[0035] 2) Move the ceramic slurry into a vacuum container, vacuumize and degas under 10Pa, then slowly inject the slurry into a plaster mold, and dry for 3 days after demoulding to obtain a special-shaped green body;
[0036] 3) Move the special-shaped blank into the vacuum sintering furnace, evenly spread a certain amount of high-purity silicon powder on the top of the blank (the amount of silicon is 1.3 times the amount of silicon required for the silicon-carbon chemical reaction), and then carry out infiltration-reaction sintering , the sintering temperature is 1680°C, the holding time is 1.5 hours (the furnace is evacuated to 15Pa when the temperature is lower than 800°C during the...
Embodiment 2
[0038] 1) 100g carbon black, 60g titanium carbide powder (average particle diameter 2 microns), 24g titanium powder (average particle diameter 4 microns) and 6g polyvinyl alcohol, 10g sodium carboxymethyl cellulose are uniformly dispersed in deionized water, then Ball milling for 24h to obtain ceramic slurry;
[0039] 2) Move the ceramic slurry into a vacuum container, vacuumize and degas under 10Pa, then slowly inject the slurry into a plaster mold, and dry for 3 days after demoulding to obtain a special-shaped green body;
[0040] 3) Move the special-shaped blank into the vacuum sintering furnace, evenly spread a certain amount of high-purity silicon powder on the top of the blank (the amount of silicon is 1.3 times the amount of silicon required for the silicon-carbon chemical reaction), and then carry out infiltration-reaction sintering , the sintering temperature is 1660°C, and the holding time is 1 hour (the furnace is evacuated to 12Pa when the temperature is lower than...
Embodiment 3
[0042] 1) disperse 120g carbon black, 50g titanium carbide powder (average particle diameter 1 micron), 17g titanium powder (average particle diameter 2 micron) and 5g polyvinyl alcohol, 8g sodium carboxymethyl cellulose in deionized water, then Ball milling for 24h to obtain ceramic slurry;
[0043] 2) Move the ceramic slurry into a vacuum container, vacuumize and degas under 10Pa, then slowly inject the slurry into a plaster mold, and dry for 3 days after demoulding to obtain a special-shaped green body;
[0044] 3) Move the special-shaped blank into the vacuum sintering furnace, evenly spread a certain amount of high-purity silicon powder on the top of the blank (the amount of silicon is 1.3 times the amount of silicon required for the silicon-carbon chemical reaction), and then carry out infiltration-reaction sintering , the sintering temperature is 1690°C, and the holding time is 1 hour (the furnace is evacuated to 18Pa when the temperature is lower than 800°C during the ...
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