Method for preparing microcrystalline glass composite material containing alumina
A technology of glass-ceramics and composite materials, applied in the direction of alumina/hydroxide, etc., can solve the problems of high energy consumption, long production cycle, high brittleness, etc., and achieve the effect of low preparation cost and good uniformity
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Embodiment 1
[0017] (1) Aluminum nitrate or aluminum chloride is made into an aqueous solution, and when the above solution is heated to 80°C, ammonia water is added dropwise to the solution until it becomes viscous, and the reaction generates boehmite sol, and the generated boehmite sol and silica sol Mixing, the pH value of the silica sol is 3 to 4, after mixing evenly, add the aqueous solution of lithium nitrate to the mixture of boehmite sol and silica sol, keep stirring until uniform, and dry the resulting sol mixture at 100°C to obtain Precursors containing alumina, silicon dioxide and lithium ions; (2) placing the prepared precursors containing alumina, silicon dioxide and lithium ions in a box furnace, and keeping the temperature at 500°C 1 hour, generate lithium-aluminosilicate glass powder; (3) make glass powder into slurry, and prepare carbon fiber-reinforced glass-ceramic and ceramic composite material prepreg tape by slurry impregnation method; (4) prepare prepreg The dipping ...
Embodiment 2
[0019] The difference between this example and Example 1 is that (1) step is: make aluminum nitrate or aluminum chloride into an aqueous solution, and when the above solution is heated to 80°C, add ammonia water dropwise to the solution until it becomes viscous, and the reaction forms boron Boehmite sol, mix the generated boehmite sol with silica sol, the pH of the silica sol is 3 to 4, after mixing evenly, dry the resulting sol mixture at 100°C to obtain alumina and silica For the precursor, other steps and process conditions are the same as in Example 1, and the sintering temperature is controlled at 1400° C. for 1 hour to obtain a dense carbon fiber reinforced mullite phase composite material. The bending strength is 688MPa, and the fracture toughness is 16.2MPa m 1 / 2 .
Embodiment 3
[0021] The difference between this embodiment and specific embodiment 1 is that (1) step is: make aluminum nitrate or aluminum chloride into an aqueous solution, and when the above solution is heated to 80°C, add ammonia water dropwise to the solution until it becomes viscous, and the reaction forms Boehmite sol, mix the generated boehmite sol with silica sol, the pH of the silica sol is 3 to 4, after mixing evenly, add the aqueous solution of magnesium nitrate to the mixture of boehmite sol and silica sol, and keep stirring To uniformity, the resulting sol mixture was dried at 100°C to obtain a precursor containing alumina, silicon dioxide and magnesium ions. The other steps and process conditions were the same as in Example 1, and the sintering temperature was controlled to keep the temperature at 1300°C. After 1 hour, a dense carbon fiber reinforced cordierite phase composite material was obtained. The bending strength is 573MPa, and the fracture toughness is 12.3MPa m 1 / 2...
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