Toughened polylactic acid capable of being used for rapid forming and preparation method thereof
A polylactic acid and toughening technology, applied in the direction of additive processing, etc., can solve the problems of complex process, unfavorable industrial production, affecting the biodegradability of polylactic acid, etc., achieving simple preparation process, good surface gloss, and overcoming brittle fracture. Effect
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Embodiment 1
[0026] Dry 97 parts of polylactic acid and 3 parts of ethylene-acrylate-glycidyl methacrylate at 65°C for 3 to 4 hours respectively, add to a high-speed mixer after drying, and add 0.1 part of antioxidant 1010 at the same time, in the high-speed mixer After 3 minutes of mixing a premix was obtained. The parts mentioned are all calculated by mass parts;
[0027] Put the premixed material obtained above into the feeding port of the twin-screw extruder, the barrel temperature is 165-195°C, the die head temperature is 190°C, the screw speed is 200 rpm, and the twin-screw length-to-diameter ratio is 40:1. extrusion granulation;
[0028] The obtained toughened polylactic acid had a tensile strength of 62 MPa and an elongation at break of 17.5%.
Embodiment 2
[0030] Dry 98.5 parts of polylactic acid and 1.5 parts of ethylene-acrylate-glycidyl methacrylate at 65°C for 3 to 4 hours, add to the high-speed mixer after drying, and add 0.1 part of antioxidant 1010 at the same time, and put them in the high-speed mixer After 3 minutes of mixing a premix was obtained. The parts mentioned are all calculated by mass parts;
[0031] Put the premixed material obtained above into the feeding port of the twin-screw extruder, the barrel temperature is 165-195°C, the die head temperature is 190°C, the screw speed is 200 rpm, and the twin-screw length-to-diameter ratio is 40:1. extrusion granulation;
[0032] The obtained toughened polylactic acid had a tensile strength of 62 MPa and an elongation at break of 14.5%.
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