Polyparaphenylene benzo dioxazole fiber containing fluorine on surface and preparation method thereof
A technology of benzobisoxazole and poly-p-phenylene, which is applied in the field of poly-p-phenylene benzobisoxazole fiber and its preparation, can solve the problem of the decrease of the surface mechanical properties of the fiber itself, affecting the surface mechanical properties of the fiber itself, polymer Macromolecular chain breakage and other problems, to achieve the effect of improving interlayer shear strength, enhancing mechanical properties, and reducing the decline in mechanical strength
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Embodiment 1
[0033] First place the poly-p-phenylene benzobisoxazole fiber body in a closed vacuum reactor, then evacuate, and replace the air in the reactor with nitrogen three times, then fill the vacuum reactor with hydrogen fluoride gas, and treat for 3 Minutes, then fill the vacuum reactor with fluorine / oxygen / nitrogen mixed gas, control the partial pressure of hydrogen fluoride in the reactor to 1KPa, the partial pressure of fluorine to 10KPa, the partial pressure of oxygen to 1KPa, and the partial pressure of nitrogen to 50KPa, and heat up The fluorination treatment was carried out at 25°C for 20 minutes, and finally the poly(p-phenylenebenzobisoxazole) fiber was stored in air atmosphere for at least 1 hour.
[0034] Add the obtained fluorine-containing PBO fiber into the epoxy resin matrix to prepare the corresponding composite material. The relevant properties of the obtained composite material are shown in the attached table.
Embodiment 2
[0036] First place the poly-p-phenylene benzobisoxazole fiber body in a closed vacuum reactor, then evacuate, and replace the air in the reactor with nitrogen three times, then fill the vacuum reactor with hydrogen fluoride gas, and treat for 5 Minutes, then fill the vacuum reactor with fluorine / oxygen / argon mixed gas, control the partial pressure of hydrogen fluoride in the reactor to 4KPa, the partial pressure of fluorine to 60KPa, the partial pressure of oxygen to 6KPa, and the partial pressure of argon to 240KPa, The temperature was raised to 50° C. for fluorination treatment for 5 minutes, and finally the poly(p-phenylenebenzobisoxazole) fiber was stored in air atmosphere for at least 1 hour.
[0037] Add the obtained fluorine-containing PBO fiber into the epoxy resin matrix to prepare the corresponding composite material. The relevant properties of the obtained composite material are shown in the attached table.
Embodiment 3
[0039] First place the poly-p-phenylene benzobisoxazole fiber body in a closed vacuum reactor, then evacuate, and replace the air in the reactor with nitrogen three times, then fill the vacuum reactor with hydrogen fluoride gas for 10 Minutes, then fill the vacuum reactor with fluorine / oxygen / helium mixed gas, control the partial pressure of hydrogen fluoride in the reactor to 0.01KPa, the partial pressure of fluorine to 0.5KPa, the partial pressure of oxygen to 0.05KPa, and the partial pressure of helium to The pressure is 5KPa, and the temperature is raised to 100°C for fluorination treatment for 2 hours, and finally the poly(p-phenylenebenzobisoxazole) fiber is stored in the air atmosphere for at least 1 hour.
[0040] Add the obtained fluorine-containing PBO fiber into the epoxy resin matrix to prepare the corresponding composite material. The relevant properties of the obtained composite material are shown in the attached table.
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