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首页> 外文期刊>Journal of Renewable Materials >Cellulose Nanomaterials as Binders: Laminate and Particulate SystemsCellulose Nanomaterials as Binders: Laminate and Particulate Systems
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Cellulose Nanomaterials as Binders: Laminate and Particulate SystemsCellulose Nanomaterials as Binders: Laminate and Particulate Systems

机译:纤维素纳米材料作为粘合剂:层压材料和颗粒体系纤维素纳米材料作为粘合剂:层压材料和颗粒系统

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摘要

A novel application of cellulose nanomaterials, particularly cellulose nanofibrils (CNF) as a binder in conventional and novel laminate and particulate composite systems is discussed. Using cellulose nanomaterials as a reinforcing agent in conventional polymer composites faces several difficulties: 1) there are no easy ways to dry the CNF and maintain nanoscale dimensions, 2) there are compatibility issues related to cellulose-polymer bonding, and 3) there are issues related to obtaining a good distribution and redispersion of nanoscale materials inside a polymer matrix. An alternative strategy is applications in which cellulose nanomaterials can be used in the aqueous suspension form without first needing to dry them. In addition, applications should be targeted that take advantage of the impressive strength properties of these nanomaterials while capturing the nanoscale material property enhancements in the final product. It has been demonstrated that CNF is able to bond lamina of paper together to produce a new class of all-renewable paper nanolaminates with exceptional mechanical properties exceeding many reinforced plastic formulations. It has also been demonstrated that particleboard panels can be successfully manufactured without any added formaldehyde by complete replacement of urea-formaldehyde resin. Efforts to use cellulose nanomaterials in paper applications are also reviewed as well as adhesion mechanisms involved in such composite systems. The future outlook and potential market opportunities concerning this new application of cellulose nanomaterials, as well as known and potential limitations and challenges in the way of commercialization efforts, are presented.
机译:讨论了纤维素纳米材料,特别是纤维素纳米纤维(CNF)作为常规和新型层压体和颗粒复合体系中的粘合剂的新型施用。在常规聚合物复合材料中使用纤维素纳米材料面部面向几个困难:1)没有简单的方法干燥CNF并保持纳米级尺寸,2)与纤维素 - 聚合物键合有关的兼容性问题,以及3)存在问题与在聚合物基质内获得良好的分布和重新分布纳米级材料。替代策略是纤维素纳米材料可以在含水悬浮液中使用的应用,而不首先需要干燥它们。此外,应用应靶向,以利用这些纳米材料的令人印象深刻的强度特性,同时捕获最终产品中的纳米级材料性能增强。已经证明CNF能够将纸薄层粘合在一起,以产生新的全再生纸纳米胺,具有出色的机械性能超过许多增强塑料制剂。还证实,通过完全替代尿素 - 甲醛树脂,可以成功地制造刨花板板而无需添加任何添加的甲醛。还讨论了在纸张应用中使用纤维素纳米材料的努力以及参与这种复合系统的粘附机制。展示了未来的途径和潜在的市场机会,以及纤维素纳米材料的新应用,以及以商业化努力方式的已知和潜在的限制和挑战。

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