Preparation method of biodegradable super-tough flame-retardant polylactic acid composite material
A composite material, polylactic acid technology, applied in the field of preparation of super-tough flame-retardant polylactic acid-based composite materials, can solve problems such as difficult to popularize and use, affect toughening effect, product phase separation, etc., to increase compatibility and impact strength The effect of improving and improving toughness
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Embodiment 1
[0024] The polylactic acid and polybutylene succinate were dried at 80°C for 12h.
[0025] Add 80 parts of PLLA and 20 parts of PBS into the internal mixer, pre-blended at 60 rpm for 5 minutes at a temperature of 185 ° C, then added 1.0 parts of TPP and 9.0 parts of TBT, and continued to melt blend for 15 minutes, at 185 ° C , 10min molded under 6MPa pressure to prepare super-tough flame-retardant polylactic acid-based composites.
Embodiment 2
[0027] The polylactic acid and polybutylene succinate were dried at 80°C for 12h.
[0028] Add 80 parts of PLLA and 20 parts of PBS into the internal mixer, pre-blended at 60 rpm for 5 minutes at a temperature of 185 ° C, then added 2.0 parts of TPP and 8.0 parts of TBT, and continued to melt blend for 15 minutes, at 185 ° C , 10min molded under 6MPa pressure to prepare super-tough flame-retardant polylactic acid-based composites.
Embodiment 3
[0030] The polylactic acid and polybutylene succinate were dried at 80°C for 12h.
[0031] Add 80 parts of PLLA and 20 parts of PBS into the internal mixer, pre-blended at 60 rpm for 5 minutes at a temperature of 185 ° C, then added 3.0 parts of TPP and 7.0 parts of TBT, and continued to melt blend for 15 minutes, at 185 ° C , 10min molded under 6MPa pressure to prepare super-tough flame-retardant polylactic acid-based composites.
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