A kind of preparation method of boron modified silicon nitride fiber
A technology of silicon nitride fiber and boron modification, which is applied in the direction of inorganic raw material artificial filaments, can solve the problems of adverse effects on the spinnability of the precursor, damage to the fibril structure, and low content of B elements, so as to improve the mechanical properties, Improved stability and high activity
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Embodiment 1
[0040] (1) Preparation of highly active Si-N fibers. Put polycarbosilane non-melting fibers in the decarburization-nitriding system, vacuumize, then replace the gas in the system with nitrogen to normal pressure, repeat at least three times; feed high-purity ammonia gas, and heat up, heating system: 2 hours Raise the temperature to 500°C, raise the temperature to 700°C at 0.8°C / min, keep it for 0.5h, raise the temperature to 1200°C at 100°C / h, and keep it for 1h. Cool to room temperature with nitrogen gas to obtain highly active Si-N fibers; (2) Boronation of highly active Si-N fibers. In a nitrogen atmosphere, place highly active Si-N fibers and sodium fluoroborate in a decarburization-nitridation system, program the temperature up to 450°C, react for 24 hours, and cool to room temperature with nitrogen; (3) Nitrogen of boronized fibers change. Introduce high-purity ammonia gas, heat up to 1350°C for 6 hours, and keep warm for 1.5 hours. Cool to room temperature with nitro...
Embodiment 2
[0044] (1) Preparation of highly active Si-N fibers. Put polycarbosilane non-melting fibers in the decarburization-nitriding system, vacuumize, and then replace the gas in the system with argon to normal pressure, repeat at least three times; feed high-purity ammonia gas, and heat up, heating system: 2 The temperature was raised to 500°C in 1 hour, and then the temperature was raised to 700°C at 0.9°C / min, then kept for 0.5h, then raised to 1000°C at 100°C / h, and kept for 2h. Cool to room temperature with argon to obtain highly active Si-N fibers; (2) Boronation of highly active Si-N fibers. In an argon atmosphere, place the highly active Si-N fiber and potassium fluoroborate in a decarburization-nitridation system, program the temperature to 400°C, react for 30 hours, and cool to room temperature with argon; (3) boronized fiber Nitriding. Introduce high-purity ammonia gas, heat up to 1400°C for 6 hours, and keep warm for 1 hour. Cool to room temperature with argon, and it'...
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