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The Study on Nanocellulose and Their Biocomposites

机译:纳米纤维素及其生物复合研究

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Nanocellulose fibers (CNFs) with the average diameter below 100nm were successfully obtained by a high shear fluid processor, viz. a microfluidizer. Their large surface area and nano-scale dimensions can lead to the emerging materials for reinforcements in polymer composites, differentiating from common polymer composites and providing the opportunity for nano-engineered materials that could have not achieved from conventional materials. CNF nanopapers with synthetic fibers such as polylactic acid (PLA) were fabricated by a wet-laid sheet forming process, and then molded by high pressure calendering to manufacture CNF/PLA nanocomposites. The wet-laid process was found a good way to make CNF/PLA nanopapers and nanocomposites. Their mechanical performances were increased by the incorporation of CNFs due to the reinforcing effects of CNFs.
机译:通过高剪切流体处理器,VIZ成功地获得平均直径低于100nm的纳米纤维素纤维(CNF)。微流体。它们的大表面积和纳米尺寸尺寸可以导致用于在聚合物复合材料中加固的新出现材料,与普通的聚合物复合材料区分开,并为纳米工程材料提供可能未从常规材料实现的纳米工程材料的机会。通过湿式板材成形工艺制造具有合成纤维的CNF纳米粉粉,例如聚乳酸(PLA),然后通过高压压延模塑以制造CNF / PLA纳米复合材料。湿式工艺得到了制造CNF / PLA纳米粉刺和纳米复合材料的好方法。由于CNF的增强效应,通过掺入CNF来增加它们的机械性能。

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