Anti-penetration material as well as preparation method and application thereof
A composite material and graphene technology, applied in applications, protective equipment, protective equipment, etc., can solve the problems of insufficient ability of armor to resist continuous penetration and damage, protective requirements restricting the lightweight of armor, and inability to meet armor protection. Improve the ability to resist continuous penetrating damage, high energy transfer efficiency, and good impact effects
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Embodiment 1
[0042] A method for preparing an anti-penetration material, comprising the following steps:
[0043](1) The support layer is made of multi-layer carbon fiber woven fabrics pre-impregnated with resin and bonded together by hot pressing. The pre-impregnated resin used is epoxy resin, and the mass ratio of epoxy resin to the support layer is 30-40%. Under the conditions of 120-150° C. and pressure of 15-20 MPa, heat preservation and pressure-holding for 30 minutes to obtain a support layer with a thickness of 5 mm.
[0044] (2) on SiO 2 -Add ethanol to the STF system of the polyethylene glycol system to dilute, the dilution volume ratio is ethanol:STF=3:1, put the aramid fiber II woven fabric into the above solution for dipping treatment, take it out and put it under the condition of 60-100°C Dry for 8 hours to obtain the aramid fiber II / STF composite woven fabric.
[0045] Graphene is added in the epoxy resin, stir and disperse evenly first, then ultrasonic vibration 30min, af...
Embodiment 2
[0053] The difference between embodiment 2 and embodiment 1 is that SiO 2 -The dilution volume ratio of STF system and ethanol in polyethylene glycol system is 1:1.
Embodiment 3
[0055] The difference between embodiment 3 and embodiment 1 is that graphene is selected from graphene oxide.
[0056] Experiments show that SiO 2 -The anti-puncture effect of STF system and ethanol dilution volume ratio of polyethylene glycol system is 1:1 is better than 3:1; graphene oxide is better combined with fiber interface due to the presence of polar groups on the surface, and its mechanical properties are better superior to graphene.
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