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Preparation and properties of L-lactide-grafted sisal fiber-reinforced poly(lactic acid) composites

机译:L-丙交酯的剑麻纤维增强聚乳酸复合材料的制备及性能

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Pretreatment of the sisal fiber (SF) grafting with L-lactide (LA) monomer via a ring-opening polymerization catalyzed by a Sn(II)-based catalyst was performed to improve the interfacial adhesion between SF and poly (lactic acid) (PLA). Biocomposites from LA-grafted SF (SF-g-LA) and PLA were prepared by compression molding with fiber weight fraction of 10, 20, 30, and 40%, and then were investigated in contrast with alkali-treated sisal fiber (ASF) reinforced PLA composites and untreated SF reinforced PLA composites. PLA composites reinforced by half-and-half SF-g-LA/untreated SF (half SF-g-LA) were prepared and studied as well, considering the disadvantages of SF-g-LA. The results showed that both the tensile properties and flexural properties of the SF-g-LA reinforced PLA composites were improved noticeably as the introduction of SF-g-LA, compared with pure PLA, untreated SF reinforced PLA composites and ASF reinforced PLA composites. The mechanical properties of the half SF-g-LA reinforced PLA composites were not worse, even better in some aspects, than the SF-g-LA reinforced PLA composites. Fourier transform infrared analysis and differential scanning calorimetry analysis exhibited that both the chemical composition and crystal structure of the SFs changed after LA grafting. In addition, the fracture surface morphology of the composites was studied by scanning electron microscopy. The morphological studies demonstrated that a better adhesion between LA-grafted SF and PLA matrix was achieved. POLYM. COMPOS., 37:802-809, 2016. (c) 2014 Society of Plastics Engineers
机译:通过基于Sn(II)的催化剂催化的开环聚合反应对L-丙交酯(LA)单体接枝剑麻纤维(SF)进行预处理,以改善SF与聚乳酸(PLA)之间的界面粘合性)。通过压缩成型纤维重量分数分别为10%,20%,30%和40%的纤维,从LA接枝SF(SF-g-LA)和PLA制备生物复合材料,然后与碱处理的剑麻纤维(ASF)进行对比研究增强的PLA复合材料和未处理的SF增强的PLA复合材料。考虑到SF-g-LA的缺点,还制备并研究了由半SF-g-LA /未处理SF(半SF-g-LA)增强的PLA复合材料。结果表明,与纯PLA,未经处理的SF增强PLA复合材料和ASF增强PLA复合材料相比,引入SF-g-LA可以显着改善SF-g-LA增强PLA复合材料的拉伸性能和弯曲性能。半SF-g-LA增强的PLA复合材料的机械性能并不比SF-g-LA增强的PLA复合材料差,甚至在某些方面更好。傅里叶变换红外分析和差示扫描量热分析表明,LA接枝后SF的化学组成和晶体结构均发生了变化。另外,通过扫描电子显微镜研究了复合材料的断裂表面形态。形态学研究表明,LA接枝的SF与PLA基质之间具有更好的附着力。 POLYM。 COMPOS。,37:802-809,2016.(c)2014年塑料工程师学会

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