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定制用于先进复合材料的PBAT基体与聚四氟乙烯改性微晶纤维素添加剂之间的界面粘附力。

Tailoring Interfacial Adhesion between PBAT Matrix and PTFE-Modified Microcrystalline Cellulose Additive for Advanced Composites.

作者信息

Wang Hongkun, Liu Xuran, Liu Jinfeng, Wu Min, Huang Yong

机构信息

National Engineering Research Center of Engineering Plastics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Polymers (Basel). 2022 May 12;14(10):1973. doi: 10.3390/polym14101973.

Abstract

Cellulose materials have the potential to serve as sustainable reinforcement in polymer composites, but they suffer from challenges in improving interfacial compatibility with polymers through surface modification. Here, we propose adjusting the interfacial compatibility between microcrystalline cellulose (MCC) and poly (butylene adipate-co-terephthalate) (PBAT) through the strategy based on surface energy regulation. Mechanical ball milling with polytetrafluoroethylene (PTFE) powder was used to simultaneously pulverize, and surface modify MCC to produce MCC sheets with different surface energy. The modified MCC was used to reinforce PBAT composites by simple melt blending. The surface morphology, surface energy of MCC, and the amount of friction transferred PTFE during ball milling were characterized. The mechanical performance, composite morphology, crystallization behavior and dynamic thermomechanical analysis of the composites were investigated. The interfacial adhesion strength of composites closely relates to the surface energy of modified MCC. When the surface energy of MCC is closer to that of the PBAT matrix, it exhibits the better interfacial adhesion strength, resulting in the increased mechanical properties, crystallization temperature, storage modulus, and loss modulus. This work provides effective strategy for how to design fillers to obtain high-performance composites.

摘要

纤维素材料有潜力作为聚合物复合材料中的可持续增强材料,但在通过表面改性提高与聚合物的界面相容性方面面临挑战。在此,我们提出基于表面能调控策略来调节微晶纤维素(MCC)与聚(己二酸丁二醇酯-对苯二甲酸丁二醇酯)(PBAT)之间的界面相容性。使用聚四氟乙烯(PTFE)粉末进行机械球磨,同时对MCC进行粉碎和表面改性,以制备具有不同表面能的MCC片材。通过简单的熔融共混,用改性后的MCC增强PBAT复合材料。对MCC的表面形貌、表面能以及球磨过程中摩擦转移的PTFE量进行了表征。研究了复合材料的力学性能、复合形态、结晶行为和动态热机械分析。复合材料的界面粘合强度与改性MCC的表面能密切相关。当MCC的表面能与PBAT基体的表面能越接近时,其界面粘合强度越好,从而导致力学性能、结晶温度、储能模量和损耗模量增加。这项工作为如何设计填料以获得高性能复合材料提供了有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8df7/9145506/5348586971c5/polymers-14-01973-g001.jpg

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