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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Effect of lignocellulosic filler type and content on the behavior of polycaprolactone based eco-composites for packaging applications
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Effect of lignocellulosic filler type and content on the behavior of polycaprolactone based eco-composites for packaging applications

机译:木质纤维素填料类型和含量对基于聚己内酯的生态复合材料在包装中的行为的影响

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This study was based on the influence of lignocellulosic fillers and content on the morphology, crystallization behavior and thermal, mechanical and barrier properties of fully biodegradable eco-composites based on polycaprolactone for packaging applications. The biodegradation in soil as a function of time was also analyzed. Composites with 5 and 15 wt% of cotton (CO): cellulose (CE) and hydrolyzed-cellulose (HCE) were prepared by melt-mixing. It was determined that, whereas lower content of CO and CE produced a decrease on the crystallinity of the matrix, HCE did not affect it. Increasing the filler content, the crystallinity degree of the matrix decreased at less extent, which was independent on the filler type. A clear reduction on the theoretical melting point, attributed to heterogeneous nucleation sites, took place for the lower content of CO and CE. Induction and half-crystallization times diminished when fillers were incorporated but the effect was less notorious at higher filler contents. All fillers enhanced the Young's modulus of the matrix but the optimal mechanical properties were not obtained with HCE, as was expected, but with CE. After analyzing the main parameters that affect the mechanical properties of the composite; such as morphology, hydrophilicity, crystallinity, mechanical properties and thermal stability of the fillers themselves, interface interaction, filler dispersion and thermal aspects of the composites, we concluded that the parameters responsible for such behavior were the larger aspect ratio, better dispersion and enhanced interface interaction of the CE filler. These parameters also affected the barrier properties and the process of biodegradation in soil of the composites.
机译:这项研究是基于木质纤维素填料和含量对包装用聚己内酯完全可生物降解的生态复合材料的形态,结晶行为以及热,机械和阻隔性能的影响。还分析了土壤中生物降解与时间的关系。通过熔融混合制备具有5和15wt%的棉(CO):纤维素(CE)和水解纤维素(HCE)的复合材料。已确定,尽管较低的CO和CE含量会降低基质的结晶度,但HCE不会对其产生影响。增加填料含量,基质的结晶度降低的程度较小,这与填料类型无关。由于较低的CO和CE含量,理论熔点明显降低,这归因于异质形核位点。当加入填料时,诱导和半结晶时间减少了,但是在填料含量较高时,效果并不那么臭。所有填料均提高了基体的杨氏模量,但与预期的一样,HCE并未获得最佳的机械性能,而CE却获得了最佳的机械性能。在分析了影响复合材料力学性能的主要参数之后;如填料本身的形态,亲水性,结晶度,机械性能和热稳定性,界面相互作用,填料分散和复合材料的热方面,我们得出结论,造成这种行为的参数是较大的长径比,更好的分散性和增强的界面CE填料的相互作用。这些参数还影响了复合材料在土壤中的阻隔性能和生物降解过程。

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