Method for promoting shearing performance of carbon/carbon-lithium aluminum silicon joint
A lithium-aluminum-silicon, high-performance technology, which is applied in the field of preparation of carbon/carbon-lithium-aluminum-silicon joints, can solve the problem of weak interface between the modified layer and the intermediate layer, etc., to solve the problem of weak interface interface, improve shear strength, increase Effect of effective connection area
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Embodiment example 1
[0030] Cut the 2D C / C composite material into a flat plate of 30mm×30mm×4mm, polish it with 100# silicon carbide water sandpaper, clean it ultrasonically with absolute ethanol and deionized water for 30 minutes, and then place it in a blast drying oven at 100°C Dry in medium for more than 4 hours for later use.
[0031] Weigh 100g of silicon powder, 10g of carbon powder, and 5g of alumina powder, and use a roller ball mill to mix them evenly; then embed the C / C composite material in a graphite crucible with mixed powder, and seal it with graphite paper; The crucible was placed in a high-temperature reaction graphitization furnace, and under the protection of argon, the temperature of the furnace was raised to 1700°C at a rate of 20°C / min, and then to 2300°C at a rate of 5°C / min, and kept for 1 hour. , and then turn off the power and cool down to room temperature naturally to obtain a C / C composite material modified by silicon-based ceramic coating, the surface morphology of wh...
Embodiment example 2
[0035] Cut the 2D C / C composite material into a flat plate of 30mm×30mm×4mm, polish it with 100# silicon carbide water sandpaper, clean it ultrasonically with absolute ethanol and deionized water for 30 minutes, and then place it in a blast drying oven at 100°C Dry in medium for more than 4 hours for later use.
[0036] Weigh 100g of silicon powder, 10g of carbon powder, and 5g of alumina powder, and use a roller ball mill to mix them evenly; then embed the C / C composite material in a graphite crucible with mixed powder, and seal it with graphite paper; The crucible was placed in a high-temperature reaction graphitization furnace, and under the protection of argon, the furnace temperature was raised to 1700°C at a rate of 20°C / min, and then to 2300°C at a rate of 5°C / min, and kept for 1 hour. , and then turn off the power and naturally cool to room temperature to obtain a silicon-based ceramic modified C / C composite material.
[0037] The above coating sample was placed in a ...
Embodiment example 3
[0041] Cut the 2D C / C composite material into a flat plate of 30mm×30mm×4mm, polish it with 100# silicon carbide water sandpaper, clean it ultrasonically with absolute ethanol and deionized water for 30 minutes, and then place it in a blast drying oven at 100°C Dry in medium for more than 4 hours for later use.
[0042] Weigh 100g of silicon powder, 10g of carbon powder, and 5g of alumina powder, and use a roller ball mill to mix them evenly; then embed the C / C composite material in a graphite crucible with mixed powder, and seal it with graphite paper; The crucible was placed in a high-temperature reaction graphitization furnace, and under the protection of argon, the furnace temperature was raised to 1700°C at a rate of 20°C / min, and then to 2300°C at a rate of 5°C / min, and kept for 1 hour. , and then turn off the power and naturally cool to room temperature to obtain a silicon-based ceramic modified C / C composite material.
[0043] The above coating sample was placed in a ...
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