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Preparation and Properties of Poly(Lactic Acid)/Epoxidized Natural Rubber/Nano-Silica Composites

机译:聚(乳酸)/环氧化天然橡胶/纳米二氧化硅复合材料的制备及性能

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This study aimed to improve the toughness property of poly(lactic acid) (PLA) by incorporating epoxidized natural rubber (ENR), an elastomeric material and silica nanoparticle (nSiO_2), a spherical inorganic nanofiller. ENR with 30mol% epoxidation (ENR 30) was first prepared via in situ epoxidation of natural rubber by performic acid generated from the reaction between formic acid and hydrogen peroxide in the latex stage. The PLA was melt blended with three weight percentages (10, 20 and 30wt%) of ENR in an internal mixer, followed by a compression molding. The effects of ENR loadings on the mechanical properties and thermal stability of the blends were first investigated. It was found that the addition of ENR 30 increased the toughness property of the blends. The blend at 20wt% ENR 30 exhibited the highest impact strength and elongation at break, and so was selected for preparing nanocomposites with three loadings (1, 2 and 3 parts per hundred of resins) of nano-silica (nSiO_2). The results showed that all PLA/ENR 30/nSiO_2 nanocomposites exhibited higher impact strength and thermal stability than the neat 80/20 PLA/ENR 30 blend.
机译:本研究旨在改善的聚(乳酸)的韧性特性(PLA)由结合有环氧化天然橡胶(ENR),弹性体材料和二氧化硅纳米微粒(nSiO_2),球形无机纳米填充剂。 ENR与30摩尔%的环氧化(ENR 30)首先通过从在胶乳阶段甲酸和过氧化氢之间的反应生成的过甲酸制备通过在天然橡胶的环氧化原位。所述PLA进行熔融共混ENR的在内部混合器3个的重量百分比(10,20和30重量%),其次通过压缩成型。对机械性能和共混物的热稳定性ENR负载量的影响进行了研究首次。结果发现,加入ENR 30的提高共混物的韧性属性。在20wt%的ENR 30所述共混物表现出最高的冲击强度和断裂伸长率,所以被选择用于制备纳米复合材料与纳米二氧化硅三个负荷(1,2和3份每百树脂)(nSiO_2)。结果表明,所有的PLA / ENR 30 / nSiO_2纳米复合材料具有比纯80/20 PLA / ENR 30混合表现出较高的冲击强度和热稳定性。

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