A kind of boron nitride continuous fiber and its preparation process and application
A preparation process and continuous fiber technology, which are applied to boron nitride continuous fiber and its preparation process and application field, can solve the problems of restricting the large-scale continuous production of continuous fibers, high initial melting temperature of boric acid, and high fiber diameter dispersion. Solve interfacial wettability and compatibility issues, short curing time, and the effect of clear fiber interface
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Embodiment 1
[0026] Use 98% (weight) boric acid reagent + 2% (weight) rare earth yttrium as raw materials, put it into the chemical material drawing furnace and melt it, the initial melting temperature is set to 700 ° C, the melted glass flows into the chemical material drawing furnace wire drawing bushing Then, according to the glass fiber process, a boron oxide fiber with a diameter of 6 microns and 200 per bundle is drawn, and the fiber is plied to become a 1K boron oxide bundle, and then 4 bundles of boron nitride bundles are twisted and plied, After that, carry out nitriding reaction in a continuous nitriding furnace, at 800°C, feed ammonia gas, the total flow rate of ammonia gas is 2m 3 / h, high-temperature stretching nitriding reaction is carried out in the continuous high-temperature stretching nitriding furnace, and the continuous treatment of the fiber in the heat treatment furnace under nitrogen atmosphere is realized through the control of the winding and unwinding equipment. Th...
Embodiment 2
[0028] Using 90% (weight) boric acid reagent + 10% (weight) rare earth neodymium as raw materials, put it into the chemical material drawing furnace and melt it. The initial melting temperature is set to 700°C, and the melted glass flows into the chemical material drawing furnace to draw the bushing Then, according to the glass fiber process, a boron oxide fiber with a diameter of 7 microns and 200 per bundle is drawn, and the fiber is plied to become a 0.5K boron oxide bundle, and then three bundles of boron nitride bundles are twisted Joint stock, after that, carry out nitriding reaction in the continuous nitriding furnace, at 950 ℃, feed ammonia gas, the total flow rate of ammonia gas is 2m 3 / h, high temperature stretching nitriding reaction is carried out in the continuous high temperature stretching nitriding furnace, and the continuous treatment of the fiber in the heat treatment furnace under nitrogen atmosphere is realized through the control of the winding and unwindi...
Embodiment 3
[0030] Using 95% (weight) boric acid reagent + 5% (weight) rare earth cerium as raw material, put it into the chemical material drawing furnace and melt it. The initial melting temperature is set to 700°C, and the melted glass flows into the chemical material drawing furnace to draw the bushing Then, according to the glass fiber process, a boron oxide fiber with a diameter of 5 microns and 200 per bundle is drawn, and the fiber is plied to become a 1.5K boron oxide bundle, and then 5 bundles of boron nitride bundles are twisted Joint stock, after that, carry out nitriding reaction in continuous nitriding furnace, at RT (room temperature: RoomTemperature), feed ammonia gas, the total flow rate of ammonia gas is 2m 3 / h, high temperature stretching nitriding reaction is carried out in the continuous high temperature stretching nitriding furnace, and the continuous treatment of the fiber in the heat treatment furnace under the nitrogen atmosphere is realized through the control of...
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