聚乳酸
极限氧指数
阻燃剂
聚磷酸铵
材料科学
聚电解质
复合材料
化学工程
艾氏冲击强度试验
色散(光学)
燃烧
化学
聚合物
极限抗拉强度
有机化学
烧焦
工程类
物理
光学
作者
Xiaodong Jin,Suping Cui,Shibing Sun,Xiaoyu Gu,Hongfei Li,Xiaodong Liu,Wufei Tang,Jun Sun,Serge Bourbigot,Sheng Zhang
标识
DOI:10.1016/j.compositesa.2019.105485
摘要
A bio-polyelectrolyte (PC) was synthesized by reacting phytic acid (PA) with casein (CS), and used as the shell materials to microencapsulate ammonium polyphosphate (APP). The obtained core-shell structured flame retardant ([email protected]) was incorporated into polylactic acid (PLA). The dispersion of [email protected] was greatly improved. As a result, the elongation at break and notched impact strength were improved from 6.9% and 3.5 KJ/m2 of neat PLA sample to 14.4% and 4.7 KJ/m2 of PLA samples containing 5%[email protected] Moreover, the fire resistance of PLA/5%[email protected] composites was also enhanced. The limiting oxygen index (LOI) value was increased from 19.6% to 28.3%; the vertical burning (UL-94) rating was upgraded from no rating to V-0; and the peak heat release rate value was decreased from 935.8 kW/m2 to 747.9 kW/m2. It is suggested that the well-dispersed [email protected] alters the degradation routine of PLA matrix, leading to the rapid formation of physical barriers.
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