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聚乳酸/聚羟基脂肪酸酯/聚(丁二酸丁二醇酯-己二酸酯)二元和三元共混物的热机械和力学分析

Thermomechanical and mechanical analysis of polylactic acid/polyhydroxyalkanoate/poly(butylene succinate--adipate) binary and ternary blends.

作者信息

Sabalina Alisa, Platnieks Oskars, Gaidukova Gerda, Aunins Arturs, Eiduks Toms Valdemars, Gaidukovs Sergejs

机构信息

Institute of Chemistry and Chemical Technology, Faculty of Natural Sciences and Technology, Riga Technical University P. Valdena 3 LV-1048 Riga Latvia

Institute of Materials and Surface Engineering, Faculty of Natural Sciences and Technology, Riga Technical University P. Valdena 3 LV-1048 Riga Latvia.

出版信息

RSC Adv. 2025 Jan 6;15(1):501-512. doi: 10.1039/d4ra05684a. eCollection 2025 Jan 2.

Abstract

Research efforts are increasingly directed towards the development of biodegradable polymers derived from renewable agricultural resources. Polymer blends, which combine multiple polymers, offer enhanced properties such as ductility and toughness while being more cost-effective compared to the development of specialized copolymers. This study examines nine binary and four ternary blends of polylactic acid (PLA), poly(butylene succinate--adipate) (PBSA), and polyhydroxyalkanoate (PHA). The morphology of most blends was characterized by spherical inclusions. Binary blends with a 50/50 wt% ratio demonstrated distinctly different interactions between the bioplastics. The addition of PBSA increased both tensile elongation and impact strength. Notably, the PLA/PBSA blend with a 30/70 wt% ratio exhibited an elongation at break of 172%. In blends where PBSA constituted 30 wt%, there was an increase in impact strength, from 15% to 29% in PHA/PLA and PLA/PBSA blends, respectively. Overall, PBSA exhibited better compatibility with PLA compared to PHA. Mechanical testing of ternary blends was integrated with the binary blends' results to construct ternary diagrams. Dynamic mechanical analysis revealed that the glass transition temperatures in PBSA binary blends remained largely independent of the blend composition. Calorimetric analysis revealed a shift in crystallization behavior. This research highlights the potential of biopolyester blends in developing bioplastics with tailored mechanical properties for applications in automotive, agriculture, food packaging, and shape memory materials.

摘要

研究工作越来越多地致力于开发源自可再生农业资源的可生物降解聚合物。聚合物共混物将多种聚合物结合在一起,具有诸如延展性和韧性等增强性能,同时与开发特殊共聚物相比更具成本效益。本研究考察了聚乳酸(PLA)、聚(丁二酸丁二醇酯-己二酸酯)(PBSA)和聚羟基脂肪酸酯(PHA)的九种二元共混物和四种三元共混物。大多数共混物的形态以球形夹杂物为特征。重量比为50/50的二元共混物在生物塑料之间表现出明显不同的相互作用。PBSA的添加提高了拉伸伸长率和冲击强度。值得注意的是,重量比为30/70的PLA/PBSA共混物的断裂伸长率为172%。在PBSA占30 wt%的共混物中,冲击强度有所提高,在PHA/PLA和PLA/PBSA共混物中分别从15%提高到29%。总体而言,与PHA相比,PBSA与PLA表现出更好的相容性。三元共混物的力学测试与二元共混物的结果相结合,构建了三元相图。动态力学分析表明,PBSA二元共混物中的玻璃化转变温度在很大程度上与共混物组成无关。量热分析揭示了结晶行为的变化。这项研究突出了生物聚酯共混物在开发具有定制机械性能的生物塑料方面的潜力,可应用于汽车、农业、食品包装和形状记忆材料等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/604e/11701805/412b989d03e9/d4ra05684a-f1.jpg

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