Thermoplastic composition and preparing method thereof
A thermoplastic composition and thermoplastic polymer technology, applied in the field of polymer materials, can solve the problems of no longer having secondary melt processability, unable to melt and plasticize again, and reduced elongation at break, etc., and achieve low cost and shape recovery. The effect of high rate and high elongation at break
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Embodiment 1
[0028] First, epoxidized polyethylene-vinyl acetate (vinyl acetate content is 60%, and the mass percent composition of epoxy group is 0.5%) 70g and polylactic acid 30g are mixed uniformly by internal mixer at 175 ℃ (totally The mixing time was 5 minutes, the rotor speed was 50 rpm), and then 6.3 g of methyl hexahydrophthalic anhydride was added and the melt blending was continued for 10 minutes to obtain a thermoplastic composition. The thermoplastic composition was hot-pressed by a flat vulcanizer to obtain a sheet with a thickness of 1 mm, which was cut into a standard sample according to national standards for mechanical performance testing. The test results are listed in Table 1.
Embodiment 2
[0030] First, epoxidized polyethylene-vinyl acetate (vinyl acetate content is 60%, and the mass percent composition of epoxy group is 0.5%) 70g and polylactic acid 30g are mixed uniformly by internal mixer at 175 ℃ (totally The mixing time is 5 minutes, the rotor speed is 50 rpm), and then 1.0 g of N-(β-aminoethyl)-γ-aminopropyltrimethoxysilane is added and melt-blended for 10 minutes to obtain a thermoplastic composition. The thermoplastic composition was hot-pressed by a flat vulcanizer to obtain a sheet with a thickness of 1 mm, which was cut into a standard sample according to national standards for mechanical performance testing. The test results are listed in Table 1.
Embodiment 3
[0032] First epoxidized polyethylene-vinyl acetate (vinyl acetate content is 60%, the mass percentage composition of epoxy group is 0.5%) 65g and polylactic acid 35g are mixed 5 minutes with internal mixer (blending condition: The temperature is 170°C, the rotor speed is 50 rpm), and then 6.3 g of methyl hexahydrophthalic anhydride is added to continue melt blending for 10 minutes (blending conditions: the temperature is 170 °C, the rotor speed is 80 rpm) to obtain a thermoplastic composition . The thermoplastic composition was hot-pressed by a flat vulcanizer to obtain a sheet with a thickness of 1 mm, which was cut into a standard sample according to national standards for mechanical performance testing. The test results are listed in Table 1.
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