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Development of PLA-PBAT and PLA-PBSA bio-blends: Effects of processing type and PLA crystallinity on morphology and mechanical properties

机译:PLA-PBAT和PLA-PBSA生物共混物的研制:加工型和PLA结晶性对形态和力学性能的影响

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In this study, immiscible blends of 75 wt% polylactide (PLA) with 25 wt% of poly[(butylene adipate)-co-terephthalate] (PBAT) were prepared through an injection-molding (IM) process as well as a twin-screw extruder (TSE) followed by IM. An amorphous and a semi-crystalline PLA were also used as the matrix to investigate the matrix crystallization effect on morphology and properties development of the blends. Blend of PLA with 25 wt% of poly[(butylene succinate)-co-adipate] (PBSA) was also prepared through IM to compare its mechanical properties with those of PLA-PBAT blends. Eventually, the tensile and flexural properties of the prepared blends were explored and their dependency on the evolution of the blend morphology was investigated. The tensile results showed that when IM is used as the sole processing technique, the ductility and toughness were significantly improved only when the semi-crystalline PLA was used as the matrix. Preprocessing through TSE also resulted in enhancement of the PLA blends' strain at break. According to the flexural experimental results, the morphology variation effect on the PLA blends' flexural properties was not as determinative as it appeared in PLA blends' tensile properties.
机译:在这项研究中,75%(重量)聚丙交酯(PLA)与聚的25%(重量)[(己二酸丁二醇酯) - 共 - 对苯二甲酸酯(PBAT)的不混溶的共混物通过注射成型(IM)方法制备以及一个twin-螺杆挤出机(TSE)随后是IM。无定形和半结晶PLA也用作基质,以研究对混合物的形态和性质开发的基质结晶作用。通过IM制备具有25wt%的PLA含有25wt%的聚[(丁烯琥珀酸酯)-CO-己二酸酯](PBSA),以将其机械性能与PLA-PBAT共混物的机械性能进行比较。最终,探索了制备的共混物的拉伸和弯曲性能,并研究了它们对混合形态的演变的依赖性。拉伸结果表明,当IM用作唯一的加工技术时,仅当使用半结晶PLA作为基质时,延展性和韧性才显着改善。通过TSE预处理也导致PLA突破的菌株的增强。根据弯曲实验结果,PLA混合物对PLA混合物的形态变化效应不是在PLA共混物的拉伸性质中出现的确定性。

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