Method for preparing polyacrylonitrile, acrylonitrile copolymer and mixture material thereof
A technology of acrylonitrile copolymer and polyacrylonitrile, which is applied in the preparation of acrylonitrile copolymer and its blend materials, and in the field of polyacrylonitrile, which can solve the problems affecting the mechanical properties of products, low crosslink density, thermal stress defects, etc. , to achieve the effects of improved mechanical properties and temperature resistance, shorter use time, and higher cross-linking density
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Embodiment 1
[0017] Take commercially available polyacrylonitrile fiber precursors, and use an electron beam accelerator to irradiate and cross-link in He gas at room temperature, with an irradiation dose of 2MGy. The irradiated samples were kept at 130°C for 1 hour for thermal oxidation reaction to obtain polyacrylonitrile precursors with a high degree of crosslinking, which were used to prepare high-performance carbon fibers.
[0018] The physical properties of the materials prepared in this example are shown in Table 1.
Embodiment 2
[0020] Raw material composition (weight percentage): polyacrylonitrile 70%, acrylonitrile copolymer 25%, tris(trimethylol)propane methacrylate (TMPT) 5%.
[0021] Accurately weigh each component, use an extruder to blend polyacrylonitrile, acrylonitrile copolymer, and TMPT, and extrude.
[0022] At normal temperature, normal pressure, and air atmosphere, one or more radiation pretreatments are carried out with electron beams, and the cumulative radiation dose is 50kGy to obtain polyacrylonitrile and acrylonitrile copolymer mixture materials.
[0023] The physical properties of the materials prepared in this example are shown in Table 1.
Embodiment 3
[0025] Raw material composition (weight percentage): polyacrylonitrile oligomer 97%, tris(trimethylol)propane methacrylate (TMPT) 3%.
[0026] Accurately weigh each component, pour each component into the impregnation device, mix well, and heat to 50°C; immerse the pre-dried commercially available carbon fiber in the above liquid mixture, soak for 60 minutes, take it out, and drain the surface of the fiber liquid, ready to use.
[0027] Under the condition of He gas, the above-mentioned materials were irradiated and cross-linked, and γ-ray (Co60) was used to irradiate the cross-linking, the irradiation dose was 3kGy, and the irradiated samples were left for 48 hours.
[0028] The material after standing was irradiated and cross-linked again by γ-ray (Co60) in the air, kept at 200°C for 1 h, and thermal oxidation reaction was carried out to obtain cross-linked polyacrylonitrile reinforced carbon fiber pre-oxidized filaments.
[0029] The physical properties of the materials pr...
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