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Cellulose Nanofibril (CNF) Reinforced Starch Insulating Foams

机译:纤维素纳米纤维(CNF)增强淀粉绝缘泡沫

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In this study, biodegradable foams were produced using cellulose nanofibrils (CNFs) and starch (S). The availability of high volumes of CNFs at lower costs is rapidly progressing with advances in pilot-scale and commercial facilities. The foams were produced using a freeze-drying process with CNF/S water suspensions ranging from 1 to 7.5 wt. % solids content. Microscopic evaluation showed that the foams have a microcellular structure and that the foam walls are covered with CNF's. The CNF's had diameters ranging from 30 nm to 100 nm. Pore sizes within the foam walls ranged from 20 nm to 100 nm. The materials densities ranging from 0.012 to 0.082 g/cm~3 with corresponding porosities between 93.46% and 99.10%. Thermal conductivity ranged from 0.041 to 0.054 W/m-K. The mechanical performance of the foams produced from the starch control was extremely low and the material was very friable. The addition of CNF's to starch was required to produce foams, which exhibited structural integrity. The mechanical properties of materials were positively correlated with solids content and CNF/S ratios. The mechanical and thermal properties for the foams produced in this study appear promising for applications such as insulation and packaging.
机译:在该研究中,使用纤维素纳米纤维(CNF)和淀粉生产可生物降解的泡沫。以较低成本的高卷CNFS的可用性正在迅速进展,导航规模和商业设施的进步。使用冷冻干燥方法生产的泡沫,CNF / S水悬浮液范围为1-7.5重量%。 %固体含量。显微镜评估表明,泡沫具有微孔结构,泡沫壁覆盖有CNF的。 CNF的直径范围为30nm至100nm。泡沫墙内的孔径范围为20nm至100nm。材料密度范围为0.012至0.082g / cm〜3,相应的孔隙率为93.46%和99.10%。导热性范围为0.041至0.054 w / m-k。由淀粉控制产生的泡沫的机械性能极低,材料非常易碎。需要加入CNF至淀粉来产生泡沫,其表现出结构完整性。材料的机械性能与固体含量和CNF / S比呈正相关。本研究中生产的泡沫的机械和热性能对于绝缘和包装等应用似乎有望。

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