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纳米纤维素悬浮液的流变性能。

Rheological properties of nanocrystalline cellulose suspensions.

机构信息

School of Chemistry & Chemical Engineering, Yangzhou University, Jiangsu 225002, PR China; Provincial Key Laboratory of Environmental Engineering & Material, Jiangsu 225002, PR China.

School of Chemistry & Chemical Engineering, Yangzhou University, Jiangsu 225002, PR China; Provincial Key Laboratory of Environmental Engineering & Material, Jiangsu 225002, PR China.

出版信息

Carbohydr Polym. 2017 Feb 10;157:303-310. doi: 10.1016/j.carbpol.2016.10.002. Epub 2016 Oct 4.

Abstract

Rheological behavior, including linear and nonlinear, as well as transient rheology of nanocrystalline cellulose (NCC) suspensions was studied in this work. Two kinds of polymer solutions, aqueous poly(vinyl alcohol) (PVA) with flexible chain structure and aqueous carboxymethyl cellulose (CMC) with semi-rigid chain structure, were used as the suspension media to further explore the role that the interactions among NCC and polymers played during shear flow. The results reveal that NCC has lower values of percolation threshold in the PVA solution than in the CMC one during small amplitude oscillatory shear (SAOS) flow because the flexible PVA chain has higher adsorbed level onto NCC particles than the negatively charged semi-rigid CMC chain, which is further confirmed by the Fourier transformed infrared (FT-IR) spectroscopy tests. As a result, the NCC suspension shows a weak strain overshoot in PVA solution during large amplitude oscillatory shear (LAOS) flow, which cannot be seen on the one in CMC solution. During startup shear flow, both of these two suspensions show evident stress overshoot behavior with the strain-scaling characteristics, indicating the formation of ordered long-term structure of rod-like NCC particles with self-similarity during flow. However, NCC suspension have far stronger stress overshoot response in CMC solution relative to the one in PVA solution. A possible synergy mechanism between NCC and CMC chain is hence proposed.

摘要

本工作研究了纳米纤维素 (NCC) 悬浮液的流变行为,包括线性和非线性,以及瞬态流变行为。使用两种聚合物溶液,具有柔性链结构的水溶液聚乙烯醇 (PVA) 和具有半刚性链结构的水溶液羧甲基纤维素 (CMC),作为悬浮介质,进一步探讨了 NCC 与聚合物之间相互作用在剪切流动过程中所起的作用。结果表明,在小振幅振荡剪切 (SAOS) 流动中,NCC 在 PVA 溶液中的渗流阈值低于 CMC 溶液中的渗流阈值,因为柔性 PVA 链比带负电荷的半刚性 CMC 链具有更高的 NCC 颗粒吸附水平,这进一步通过傅里叶变换红外 (FT-IR) 光谱测试得到证实。结果,在大振幅振荡剪切 (LAOS) 流动中,NCC 悬浮液在 PVA 溶液中表现出较弱的应变过冲,而在 CMC 溶液中则没有。在启动剪切流动过程中,这两种悬浮液都表现出明显的应力过冲行为,具有应变标度特性,表明在流动过程中形成了具有自相似性的棒状 NCC 颗粒的有序长程结构。然而,与 PVA 溶液相比,NCC 悬浮液在 CMC 溶液中具有更强的应力过冲响应。因此,提出了一种 NCC 和 CMC 链之间可能的协同机制。

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