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Mechanical properties and biodegradation of biocomposites based on poly (hydroxybutyrate-co-valerate) and alfa fibers

机译:基于聚(羟丁酸酯 - 共阀)和ALFA纤维的生物复合材料的机械性能和生物降解

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摘要

In recent years, most of the scientific research had focused on developing environment-friendly biodegradable materials after being used. There are two ways to do that: the first consists of the use of biodegradable plastics, and the second is the incorporation of biodegradable fibers in polymers. The main objective of this paper is to develop eco-friendly biodegradable biocomposites and to make their characterization. We devoted significant attention to investigate the use of alfa fiber as reinforcement in Poly (hydroxybutyrate-Co-valerate) (PHBV) material. The effects of fiber content and fiber treatment, as well as the biodegradation behavior of elaborated composites, have been investigated. From the main results, we observed some morphological changes that occurred on the fiber surface after chemical treatment. The use of fibers in PHBV increases the modulus but not necessarily improves the tensile strength of resulting composites but remains dependent on the interfacial adhesion. Alkali treatment of alfa fibers leads to improve the tensile strength and the rigidity of PHBV/alfa composites. SEM micrographs highlighted differences in microstructure of untreated and treated composites indicating that fiber-treatment also enhances the quality of the interface between the thermoplastic matrix and alfa fibers. In terms of degradability characteristics, the treated composites were highly biodegradable compared to both neat PHBV and untreated composites when subjected to water absorption in distilled and seawater. Also, elaborated composites undergo significant degradation into seawater, indicating their environmentally friendly character.
机译:近年来,大多数科学研究在使用后侧重于开发环境友好的可生物降解材料。有两种方法可以这样做:第一个包括使用可生物降解的塑料,第二种方法是在聚合物中掺入可生物降解的纤维。本文的主要目的是开发生态友好的可生物降解的生物复合材料,并进行其特征。我们致力于考虑使用Alfa纤维作为聚(羟丁酸酯 - 共 - 戊酯)(PHBV)材料中的增强物的使用。研究了纤维含量和纤维处理的影响,以及精细复合材料的生物降解行为。从主要结果来看,我们观察到化学处理后纤维表面发生的一些形态变化。在PHBV中使用纤维增加了模量,但不一定提高所得复合材料的拉伸强度,但保持依赖性对界面粘附。 ALFA纤维的碱处理导致改善PHBV / ALFA复合材料的拉伸强度和刚性。 SEM显微照片突出显示未处理和处理复合材料的微观结构的差异,表明纤维处理还提高了热塑性基质和ALFA纤维之间的界面的质量。在可降解性特性方面,与在蒸馏水和海水中的水吸收时,经处理的复合材料与齐颗PHBV和未处理的复合材料相比,高度可生物降解。此外,详细的复合材料在海水中经历了显着的降解,表明其环保性质。

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