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首页> 外文期刊>Journal of Polymers and the Environment >Toughness Improvement in Bio-based Poly(Lactic Acid)/Epoxidized Natural Rubber Blend Reinforced with Nanosized Silica
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Toughness Improvement in Bio-based Poly(Lactic Acid)/Epoxidized Natural Rubber Blend Reinforced with Nanosized Silica

机译:基于生物的聚(乳酸)/环氧化天然橡胶共混物加强纳米型二氧化硅的韧性改善

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摘要

This study focused on improving the toughness properties of poly(lactic acid) (PLA) by blending with either epoxidized natural rubber (ENR) or ENR plus nanosized silica (nSiO(2)). ENR with 30 mol% epoxidation (ENR-30) was synthesized via in situ performic acid epoxidation of NR latex under a controlled amount of hydrogen peroxide and formic acid. PLA was melt-mixed with three weight percentages (10-30 wt %) of ENR-30 using an internal mixer, followed by compression molding. The 80/20 PLA/ENR-30 blend showed the highest impact strength and elongation at break, indicating the optimally possible improvement in the toughness of PLA. This composition was further chosen for fabricating nanocomposites with nSiO(2) at 1-3 phr. Nanocomposite at 2 phr nSiO(2) revealed the highest impact strength with 1.8-fold over the neat blend, but the tensile properties of all nanocomposites decreased with the increasing nSiO(2) contents. The scanning electron microscopy analysis showed a preferential distribution of nSiO(2) in the ENR-30 phase rather than in the PLA phase. Based on thermal analysis results, the thermal stability of the entire nanocomposites was significantly higher than that of the neat blend, while the thermal behavior (T-g and T-m) of PLA in the nanocomposites showed no significant change.[GRAPHICS].
机译:该研究专注于通过与环氧化天然橡胶(ENR)或纳米纳米型二氧化硅混合来改善聚(乳酸)(PLA)的韧性特性(NSIO(2))。通过在受控过氧化氢和甲酸中,通过原位表现酸环氧化合成30mol%环氧化(EN-30)。使用内部混合器将PLA熔融混合三重百分比(10-30wt%)的EN-30,然后进行压缩成型。 80/20 PLA / REN-30混合物显示出最高的冲击强度和断裂伸长率,表明PLA的韧性最佳地改善。进一步选择该组合物用于在1-3phr下用NSIO(2)制成纳米复合材料。在2phr nSiO(2)的纳米复合材料揭示了纯混合物中的最高冲击强度,但所有纳米复合材料的拉伸性能随着NSIO(2)含量的增加而降低。扫描电子显微镜分析显示NSIO(2)的优先分布在EN-30相中而不是PLA阶段。基于热分析结果,整个纳米复合材料的热稳定性显着高于纯净共混物的热稳定性,而纳米复合材料中PLA的热行为(T-G和T-M)显示出没有显着变化。[图形]。

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