Using supercritical co 2 Method for Inorganic Modification of Aramid Fiber by Fluid Technology
A kind of aramid fiber and fluid technology technology, which is applied in the field of inorganic modification of aramid fiber, can solve the problems of large application limitations of the modification method, poor surface coverage stability, reduced mechanical properties of fibers, etc., so as to improve the resistance to light degradation, The effect of improving the resistance to photodegradation and improving the mechanical properties
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Embodiment 1
[0032] (1) Put 5g of Kevlar49 fiber into acetone solvent, ultrasonically wash at 80°C for 1h, take it out, and dry it in vacuum at 80°C for 2h.
[0033] (2) The washed and dried Kevlar49 fiber and 2g of n-butyl titanate in step (1) were placed in a 2L autoclave, and the Kevlar49 fiber was placed on a metal frame so that it would not contact with n-butyl titanate.
[0034] (3) Heat the 2L autoclave to 100°C by means of oil bath heating, first vacuum the air and water in the autoclave, and after the temperature in the autoclave drops to 80°C, fill the autoclave with CO 2 , so that the pressure in the kettle reaches 10Mpa, in supercritical CO 2State, the mass of n-butyl titanate is 3% of the mass of carbon dioxide in the reactor; after the swelling reaction for 40 minutes, the pressure in the reactor is released to normal pressure for 3 minutes, and Kevlar49 fibers containing 0.17g of n-butyl titanate are obtained.
[0035] (4) Kevlar49 fibers containing 0.17g of n-butyl titanat...
Embodiment 2
[0043] (1) Put 5.5g of Kevlar29 fibers into an acetone solvent, ultrasonically wash them at 80°C for 1 hour, take them out, and dry them under vacuum at 80°C for 2 hours.
[0044] (2) Place the washed and dried Kevlar29 fiber and 2.5g of titanium tetrachloride in a 2L autoclave in step (1), and place the Kevlar29 fiber on a metal frame so that it does not contact with titanium tetrachloride.
[0045] (3) Heat the 2L autoclave to 100°C by means of oil bath heating, first vacuum the air and water in the autoclave, and after the temperature in the autoclave drops to 80°C, fill the autoclave with CO 2 , so that the pressure in the kettle reaches 10Mpa, in supercritical CO 2 state, the quality of titanium tetrachloride is 2.5% of the mass of carbon dioxide in the reactor; after swelling for 40 minutes, the pressure in the reactor is released to normal pressure for 5 minutes to obtain Kevlar29 fibers containing 0.1 g of titanium tetrachloride.
[0046] (4) Kevlar29 fibers containin...
Embodiment 3
[0054] (1) Put 6g of Tecnora fiber into acetone solvent, ultrasonically wash at 80°C for 1h, take it out, and dry it in vacuum at 80°C for 2h.
[0055] (2) Place the Tecnora fiber and 1.2 g of titanium tetrachloride washed and dried in step (1) in a 2L autoclave, and place the Tecnora fiber on a metal frame so that it does not contact with titanium tetrachloride.
[0056] (3) Heat the 2L autoclave to 100°C by means of oil bath heating, first vacuumize the autoclave to remove the air and water, and after the temperature in the autoclave drops to 70°C, fill the autoclave with CO 2 , so that the pressure in the kettle reaches 13Mpa, in supercritical CO 2 state, the quality of titanium tetrachloride is 3.5% of the mass of carbon dioxide in the reactor; after swelling for 60 minutes, the pressure in the reactor is released to normal pressure for 3 minutes to obtain Tecnora fibers containing 0.2 g of titanium tetrachloride.
[0057] (4) Tecnora fibers containing 0.2 g of titanium t...
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