生物复合材料
材料科学
纤维素
聚合物
复合材料
聚乳酸
剪切(物理)
纤维
光学显微镜
微纤维
化学工程
扫描电子显微镜
化学
复合数
生物化学
工程类
作者
Ayan Chakraborty,Mohini Sain,Mark T. Kortschot
出处
期刊:Holzforschung
[De Gruyter]
日期:2004-12-22
卷期号:59 (1): 102-107
被引量:399
摘要
Abstract This paper describes a novel technique to produce cellulose microfibrils through mechanical methods. The technique involved a combination of severe shearing in a refiner, followed by high-impact crushing under liquid nitrogen. Fibers treated in this way were subsequently either freeze-dried or suspended in water. The fibers were characterized using SEM, TEM, AFM, and high-resolution optical microscopy. In the freeze-dried batch, 75% of the fibrils had diameters of 1 μm and below, whereas in the water dispersed batch, 89% of the fibrils had diameters in this range. The aspect ratio of the microfibrils ranged between 15 and 55 for the freeze-dried fibrils, and from 20 to 85 for the fibrils dispersed in water. These measurements suggest that the microfibrils have the potential to produce composites with high strength and stiffness for high-performance applications. The microfibrils in water were compounded with polylactic acid polymer to form a biocomposite. Laser confocal microscopy showed that the microfibrils were well dispersed in the polymer matrix.
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