Influence of drying restraint on physical and mechanical properties of nanofibrillated cellulose films

被引:0
作者
Carlos Baez
John Considine
Robert Rowlands
机构
[1] USDA Forest Service,Forest Products Laboratory
[2] University of Wisconsin–Madison,undefined
来源
Cellulose | 2014年 / 21卷
关键词
Nanofibrillated cellulose; Microfibrillated cellulose; Nanocellulose; Restraint drying; Fiber orientation; Cellulose nanofibers;
D O I
暂无
中图分类号
学科分类号
摘要
Nanofibrillated cellulose (NFC) is a renewable and biodegradable fibril that possesses high strength and stiffness resulting from high level hydrogen bonding. Films made from NFC shrink and distort as they transition from a wet state (20 wt% solids) to a state of moisture equilibrium (90 wt% solids at 50 % RH, 23 °C). Material distortions are driven by development of moisture gradients within the fibril network and effectively reduce mechanical performance. For this study, NFC was extracted from softwood holocellulose by first employing a chemical pretreatment [(2,2,6,6-tetramethylpiperidin-1-yl)oxyl catalyzed oxidation] followed by mechanical fibrillation using ultrasound energy. To assess the problem of film distortion, neat NFC films were dried at 50 % RH, 23 °C under one of the following three restraint conditions: fully restrained, partially restrained, and uniaxially drawn. The influence of restraint condition on the resulting physical and mechanical properties was evaluated. Raman and X-ray results showed that fibrils in the uniaxially drawn specimens tended to align with the drawing axis, whereas no in-plane orientation effects were observed for the fully or partially restrained specimens. Fully restrained specimens had a respective strength and stiffness of 222 MPa and 14 GPa in every (in-plane) direction. However, samples that were wet-drawn to a 30 % strain level had a respective strength and stiffness of 474 MPa and 46 GPa in the direction of draw. Mechanical properties for axially drawn specimens had both fibril alignment and fibril straightening contributions.
引用
收藏
页码:347 / 356
页数:9
相关论文
共 116 条
[1]  
Cheng Q(2007)Physical and mechanical properties of polyvinyl alcohol and polypropylene composite materials reinforced with fibril aggregates isolated from regenerated cellulose fibers Cellulose 14 593-602
[2]  
Wang SQ(2009)Transparent and high gas barrier films of cellulose nanofibers prepared by TEMPO-mediated oxidation Biomacromolecules 10 162-165
[3]  
Rials TG(2011)Influence of beating and chemical additives on residual stresses in paper Nord Pulp Pap Res J 26 445-451
[4]  
Lee SH(2006)Changes in the molecular orientation and tensile properties of uniaxially drawn cellulose films Biomacromolecules 7 3146-3150
[5]  
Fukuzumi H(1988)The compressive load-strain curve of paperboard—rate of load and humidity effects J Pulp Pap Sci 14 J37-J41
[6]  
Saito T(2008)The effect of hemicelluloses on wood pulp nanofibrillation and nanofiber network characteristics Biomacromolecules 9 1022-1026
[7]  
Wata T(2009)Elastic modulus of single cellulose microfibrils from tunicate measured by atomic force microscopy Biomacromolecules 10 2571-2576
[8]  
Kumamoto Y(2009)A new bio-based nanocomposite: fibrillated TEMPO-oxidized celluloses in hydroxypropylcellulose matrix Cellulose 16 227-238
[9]  
Isogai A(2013)Prediction of elastic properties of nanofibrillated cellulose from micromechanical modeling and nano-structure characterization by transmission electron microscopy Cellulose 20 761-770
[10]  
Gimaker M(2011)Nanocelluloses: a new family of nature-based materials Angew Chem Int Ed 50 5438-5466