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首页> 外文期刊>Journal of Applied Polymer Science >Understanding External Plasticization of Melt Extruded PHBV-Wheat Straw Fibers Biodegradable Composites for Food Packaging
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Understanding External Plasticization of Melt Extruded PHBV-Wheat Straw Fibers Biodegradable Composites for Food Packaging

机译:了解熔融挤出的PHBV-麦草纤维可生物降解复合材料在食品包装中的外部增塑

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摘要

The objective of this work is to get further knowledge on the external plasticization mechanisms of melt extruded polyhydroxyl-3-butyrate-co-3-valerate (PHBV) when combined with wheat straw fibers (WSF). Different types of biodegradable substances, all authorized for food contact according to the European regulation, i.e., acetyltributyl citrate (ATBC), glycerol triacetate (GTA) and (PEG) at different molecular weights, were tested at different percentages (5, 10 and 20 wt %). Thermal and mechanical characterization of PHBV/plasticizer blends showed that a significant plasticizing effect was obtained using hydrophobic substances such as ATBC and GTA, with an increase of the elongation at break from 1.8% up to about 6% for an additive content of 10 wt %. However, the incorporation of WSF in plasticized PHBV led to a dramatic decrease in the elongation at break of composites, neutralizing the increase of this parameter by the addition of the plasticizers. The stress at break of plasticized films was also significantly decreased by the introduction of fibers. Such a loss of ductility was mainly explained by the occurrence of microscopic defects in the materials induced by the presence of fibers and to a poor adhesion at the fiber/matrix interface. (C) 2014 Wiley Periodicals, Inc.
机译:这项工作的目的是进一步了解与小麦秸秆纤维(WSF)结合使用时熔融挤出的聚羟基3-丁酸-共3-戊酸酯(PHBV)的外部塑化机理。根据欧洲法规,所有类型的可生物降解物质均已获准与食品接触,分别以不同的百分比(5%,10%和20%)测试了不同分子量的柠檬酸乙酰基三丁酯(ATBC),甘油三乙酸酯(GTA)和(PEG)。 wt%)。 PHBV /增塑剂共混物的热和机械特性表明,使用疏水性物质(如ATBC和GTA)可获得显着的增塑效果,添加剂含量为10 wt%时,断裂伸长率将从1.8%增加至约6%。 。但是,在增塑的PHBV中加入WSF导致复合材料断裂伸长率显着降低,通过添加增塑剂中和了该参数的增加。通过引入纤维,塑化膜的断裂应力也显着降低。这种延展性的损失主要是由于纤维的存在引起的材料中微观缺陷的出现以及纤维/基质界面处的粘合性差而引起的。 (C)2014威利期刊公司

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