Method for lowering melting point of fusible polyacrylonitrile resin
A technology for polyacrylonitrile resin and melting point, which is applied in the field of reducing the melting point of fusible polyacrylonitrile resin, can solve problems such as adverse effects on performance, and achieve the effects of improving flow properties, increasing melt index, and improving processability
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Embodiment 1
[0019] Take the meltable polyacrylonitrile resin and additives and add them into a 2L open container equipped with a stirring device according to the required weight ratio, and stir for about 15 minutes until the additives and the resin are mixed evenly. If the additives are lumpy, first crush the additives into powder or fine particles, and the particle size should not exceed 200 mesh.
[0020] Fusible polyacrylonitrile resin is a copolymer of acrylonitrile and methyl methacrylate, based on the total amount of all polymerized units, the content of methyl methacrylate in the copolymer is 15wt%, and the viscosity-average molecular weight of the resin is 4000 , the melting point of the resin is 240°C, and the melt index measured at 240°C is 11g / 10 minutes.
Embodiment 2~8
[0022] The meltable polyacrylonitrile resin is a copolymer of acrylonitrile and acrylonitrile, the content of acrylonitrile in the copolymer is 14wt% based on the total amount of all polymerized units, and the viscosity-average molecular weight of the polyacrylonitrile resin is 3500. All the other are the same as embodiment 1
[0023] The specific additives used in each embodiment, the weight ratio of additives and polyacrylonitrile resin mixed, and the melting point and melt index of the mixture are listed in Table 1.
[0024] Further with the low-melting-point fusible polyacrylonitrile resin that embodiment 2~8 obtains as raw material, adopt the technology of melt spinning to carry out spinning, make the acrylic fiber of 1.46dtex, test the breaking strength and breaking elongation of fiber, its result sees Table 2.
[0025] Additives
[0026] Breaking strength
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