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Preparation of Esterified Bacterial Cellulose for Improved Mechanical Properties and the Microstructure of Isotactic Polypropylene/Bacterial Cellulose Composites

机译:改善机械性能和全同立构聚丙烯/细菌纤维素复合材料微结构的酯化细菌纤维素的制备

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摘要

Bacterial cellulose (BC) has great potential to be used as a new filler to reinforce isotactic polypropylene (iPP) due to its high crystallinity, biodegradability, and efficient mechanical properties. In this study, esterification was used to modify BC, which improved the surface compatibility of the iPP and BC. The results indicated that the cellulose octoate (CO) changed the surface properties from hydrophilic to lipophilic. Compared to the pure iPP, the tensile strength, charpy notched impact strength, and tensile modulus of the iPP/BC composites increased by 9.9%, 7.77%, and 15.64%, respectively. However, the addition of CO reinforced the iPP/CO composites. The tensile strength, charpy notched impact strength, and tensile modulus of the iPP/CO composites increased by 14.23%, 14.08%, and 17.82% compared to the pure iPP. However, the elongation at break of both the composites is decreased. The SEM photographs and particle size distribution of the composites showed improvements when the change of polarity of the BC surface, interface compatibility, and dispersion of iPP improved.
机译:细菌纤维素(BC)具有高结晶度,可生物降解性和有效的机械性能,因此有潜力用作增强等规聚丙烯(iPP)的新型填料。在这项研究中,酯化被用来修饰BC,从而改善了iPP和BC的表面相容性。结果表明辛酸纤维素(CO)将表面性能从亲水性变为亲脂性。与纯iPP相比,iPP / BC复合材料的拉伸强度,夏比缺口冲击强度和拉伸模量分别增加了9.9%,7.77%和15.64%。但是,添加的CO增强了iPP / CO复合材料。与纯iPP相比,iPP / CO复合材料的拉伸强度,夏比缺口冲击强度和拉伸模量分别提高了14.23%,14.08%和17.82%。但是,两种复合材料的断裂伸长率均降低。当BC表面的极性变化,界面相容性和iPP分散性得到改善时,复合材料的SEM照片和粒度分布均得到改善。

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