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首页> 外文期刊>Journal of Applied Polymer Science >An efficient plasticization method for poly(lactic acid) using combination of liquid-state and solid-state plasticizers
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An efficient plasticization method for poly(lactic acid) using combination of liquid-state and solid-state plasticizers

机译:使用液态和固态增塑剂组合的聚(乳酸)的高效塑化方法

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摘要

A combined use of solid plasticizer [poly(ethylene glycol), PEG] with a nominal M-w of 2000g/mol and liquid plasticizer (epoxidized soybean oil, ESO) for plasticizing poly(lactic acid) (PLA) is proposed in this study. This plasticization method brought an obvious improvement in the melting flowability of the modified PLA, which has been verified by a lower balance torque during blending and a four times increase in the melt flow index compared to neat PLA. Meanwhile, the brittleness of this glassy polymer was also improved significantly; all composites with different contents of combined plasticizers displayed an obvious yield stage and toughness fracture surfaces. The mechanisms of the plasticizing effects were investigated by polarizing optical microscopy and scanning electron microscopy. The PLA/ESO/PEG blends formed a complex reinforcement structure. ESO existed as tiny droplets and uniformly dispersed in the PLA spherulites, and strip-shaped PEG accumulated along the boundaries of interspherulites. The combined use of these two plasticizers, a liquid one and a solid one, had an excellent effect on plasticizing PLA, not only on melt flowability but also on mechanical properties. Thus, the application areas for PLA could be further expanded, such as melt blowing and melt extrusion. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46669.
机译:在本研究中提出了用标称M-W的固体增塑剂[聚(乙二醇),PEG]与标称M-W的合并使用用于塑化聚(乳酸)(PLA)(PLA)的标称M-W.该塑化方法对改性PLA的熔化流动性提高了显而易见的改善,其通过混合期间通过较低的平衡扭矩验证,与整洁PLA相比,熔体流动指数的四倍增加。同时,这种玻璃状聚合物的脆性也显着提高;所有具有不同含量的组合材料的复合材料显示出明显的产量阶段和韧性断裂表面。通过偏振光学显微镜和扫描电子显微镜来研究增塑效果的机制。 PLA / ESO / PEG共混物形成复杂的增强结构。 ESO存在为微小液滴,并均匀地分散在PLA球晶中,沿着三个伯氏晶体的边界积聚的条形钉。这些两种增塑剂的结合使用,液体液体和固体,对塑化PLA具有很好的效果,不仅熔融流动性,而且对机械性能也具有出色的效果。因此,可以进一步扩展PLA的应用领域,例如熔喷和熔融挤出。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46669。

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