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加工条件对可持续生物基聚乳酸复合材料力学性能的影响

Influence of the Processing Conditions on the Mechanical Performance of Sustainable Bio-Based PLA Compounds.

作者信息

Patti Antonella, Acierno Domenico, Latteri Alberta, Tosto Claudio, Pergolizzi Eugenio, Recca Giuseppe, Cristaudo Mirko, Cicala Gianluca

机构信息

Department of Civil Engineering and Architecture (DICAr), University of Catania, Viale Andrea Doria 6, 95125 Catania, Italy.

CRdC Nuove Tecnologie per le Attività Produttive Scarl, Via Nuova Agnano 11, 80125 Naples, Italy.

出版信息

Polymers (Basel). 2020 Sep 25;12(10):2197. doi: 10.3390/polym12102197.

Abstract

Cellulose/PLA-based blends (up to 77 vol./vol.% of the added fibers) for applications in extrusion-based technology were realized in an internal mixer by setting different operating conditions. In particular, both the mixing time and temperature were increased in order to simulate a recycling operation (10 or 25 min, 170 or 190 °C) and gain information on the potential reuse of the developed systems. The torque measurements during the compound's preparation, and the compound's mechanical tensile features, both in the static and dynamic mode, were evaluated for each investigated composition. The final results confirmed a reduction of the torque trend over time for the PLA matrix, which was attributed to a possible degradation mechanism, and confirmed by infrared spectroscopy. The mechanical behaviour of the pristine polymer changed from elastoplastic to brittle, with a significant loss in ductility going from the lower mixing temperatures up to the higher ones for the longest time. Through the addition of cellulose fibers into the composite systems, a higher stabilization of the torque in the time and an improvement in the mechanical performance were always verified compared to the neat PLA, with a maximum increase in the Young modulus (+100%) and the tensile strength (+57%), and a partial recovery of the ductility.

摘要

通过设置不同的操作条件,在密炼机中制备了用于挤出技术的纤维素/聚乳酸共混物(添加纤维含量高达77体积/体积%)。具体而言,增加混合时间和温度以模拟回收操作(10或25分钟,170或190°C),并获取有关所开发体系潜在再利用的信息。针对每种研究的组合物,评估了化合物制备过程中的扭矩测量值以及化合物在静态和动态模式下的机械拉伸特性。最终结果证实,聚乳酸基体的扭矩趋势随时间降低,这归因于可能的降解机制,红外光谱也证实了这一点。原始聚合物的机械行为从弹塑性转变为脆性,在最长时间内,从较低混合温度到较高混合温度,延展性显著降低。通过向复合体系中添加纤维素纤维,与纯聚乳酸相比,扭矩在时间上的稳定性更高,机械性能也总是得到改善,杨氏模量最大增加100%,拉伸强度最大增加57%,并且延展性部分恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a8e/7600861/c984e7d4913f/polymers-12-02197-g001.jpg

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