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Effect of plasticizers on the mechanical and thermomechanical properties of cellulose-based biocomposite films

机译:增塑剂对纤维素基生物复合膜机械和热机械性能的影响

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摘要

Biocomposites based on natural cellulose fibers (CF) and hydroxyethyl cellulose (HEC), were produced in the form of green packaging films. The effect of the different single-component plasticizers (glycerol, propylene carbonate and ethylene carbonate) on the mechanical and dynamic thermomechanical properties of the films were studied. Moreover, the softening effect of the two-component plasticizer based on deep eutectic solvents (DESs) was addressed. Of the single-component plasticizers, glycerol was found to be the most efficient by increasing the elongation at break of the composite by 53%. A similar, or even better, increase in elongation at break (up to 81%) was obtained with DESs based on choline chloride and glycerol, glucose or urea. Based on the dynamic mechanical analysis at varying humidity, the performance of plasticizers was strongly attributed to the humidity. The DES based on tetrabutylammonium bromide and propylene carbonate was most efficient at providing thermoformability to the composite by lowering the thermal softening temperature. Based on the obtained results, DESs are a highly promising plasticizers for the cellulose-based biocomposites with similar or even better plasticizing effect compared to conventional plasticizer. In addition, DESs can be used to improve the thermoformability of biocomposites, by lowering the thermal softening temperature.
机译:基于天然纤维素纤维(CF)和羟乙基纤维素(HEC)的生物复合材料以绿色包装薄膜的形式制备。研究了不同单组分增塑剂(甘油,碳酸亚丙酯和碳酸亚乙酯)对薄膜机械和动态热机械性能的影响。此外,解决了双组分增塑剂的软化效果基于深对共晶溶剂(DESS)。在单组分增塑剂中,发现甘油通过增加复合材料的伸长率为53%,是最有效的。用基于胆碱和甘油,葡萄糖或尿素的DES获得突破(高达81%)的相似甚至更好的伸长率增加(高达81%)。基于不同湿度的动态机械分析,增塑剂的性能强烈地归因于湿度。基于四丁基溴化铵和碳酸丙基碳酸亚丙酯通过降低热软化温度为复合材料提供热成型性最有效。基于所得的结果,DES是一种高度承诺的增塑剂,用于纤维素的生物复合材料,与常规增塑剂相比具有相似或甚至更好的增塑作用。此外,通过降低热软化温度,可以使用DES来改善生物复合材料的热成分性。

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