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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Toughening polylactide with polyether-block-amide and thermoplastic starch acetate: Influence of starch esterification degree
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Toughening polylactide with polyether-block-amide and thermoplastic starch acetate: Influence of starch esterification degree

机译:用聚醚嵌段酰胺和热塑性淀粉乙酸酯增韧聚乳酸:淀粉酯化度的影响

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Native corn starch was esterified with acetic anhydride and plasticized with glycerol to give the thermoplastic starch acetate (TPSA). TPSA was blended with polylactide (PLA) and polyether-block-amide-graft-glycidyl methacrylate (PEBA-g-GMA) to obtain biodegradable PLA/PEBA-g-GMA/TPSA blends with high notched impact resistance and low cost. Compared with PLA/PEBA-g-GMA blends, as much as 9 wt% expensive PEBA-g-GMA elastomer could be substituted by the slightly acetylated thermoplastic starch while retaining high impact strength. The mechanical properties depended on the esterification degree of starch acetate. The impact strength, tensile strength and elongation at break increased to the peak value with increasing the esterification degree from 0 to 0.04, thereafter they decreased on further increasing the esterification degree. The morphological results showed that the TPSA particles were smaller and more uniform at the optimum esterification degree of 0.04, leading to the peak value of the mechanical properties. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将天然玉米淀粉用乙酸酐酯化,并用甘油增塑,得到热塑性淀粉乙酸酯(TPSA)。 TPSA与聚丙交酯(PLA)和聚醚-嵌段-酰胺-接枝-甲基丙烯酸缩水甘油酯(PEBA-g-GMA)混合,获得具有高缺口抗冲击性和低成本的可生物降解的PLA / PEBA-g-GMA / TPSA混合物。与PLA / PEBA-g-GMA共混物相比,高达9 wt%的昂贵PEBA-g-GMA弹性体可以被略微乙酰化的热塑性淀粉代替,同时保持高冲击强度。机械性能取决于淀粉乙酸酯的酯化度。随着酯化度从0增加到0.04,冲击强度,拉伸强度和断裂伸长率增加到峰值,然后随着酯化度的进一步增加它们降低。形态学结果表明,在最佳酯化度为0.04时,TPSA颗粒更小,更均匀,从而导致了机械性能的峰值。 (C)2015 Elsevier Ltd.保留所有权利。

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