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High mechanical properties of micro fibrillated cellulose/HDPE composites prepared with two different methods

机译:用两种不同的方法制备微原型纤维素/ HDPE复合材料的高机械性能

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摘要

Compared to materials fabricated by traditional polymer, cellulose was chosen to improve the strength of composites due to its excellent performance in mechanical and thermal expansion properties. However, in the current investigation of manufacturing cellulose nanofibril (CNF)/high-density polyethylene (HDPE) composites, the instinct of CNF tends to aggregate, limiting the content of CNFs in composites (mostly no more than 10 wt%). Herein, we reported two green and continuous manufacturing methods, naming "suspension blending method" and "dry blending method". Micro fibrillated cellulose (MFC) was selected to enhance the stability of interfaces between HDPE with the synergetic interaction of cationic polyacrylamide, resulting in the flexural strength of similar to 78.87 MPa and the flexural modulus of similar to 3.45 GPa, which are similar to 190.12% and similar to 315.66% higher than pure HDPE respectively. Besides, the thermal expansion coefficient of our samples is similar to 28.9 ppm/k, similar to 80.3% lower than those made by HDPE. The prepared MFC/HDPE composites are expected to pave the way for the development in auto manufacturing and engineering.
机译:与传统聚合物制备的材料相比,纤维素因其优异的力学性能和热膨胀性能而被用来提高复合材料的强度。然而,在目前制造纤维素纳米纤维(CNF)/高密度聚乙烯(HDPE)复合材料的研究中,CNF的本能倾向于聚集,限制了复合材料中CNF的含量(大多不超过10 wt%)。在此,我们报告了两种绿色连续制造方法,命名为“悬浮混合法”和“干混合法”。选用微纤维化纤维素(MFC),通过阳离子聚丙烯酰胺的协同作用,提高了HDPE界面的稳定性,使其弯曲强度接近78.87MPa,弯曲模量接近3.45GPa,分别比纯HDPE高190.12%和315.66%。此外,我们的样品的热膨胀系数类似于28.9 ppm/k,比HDPE的热膨胀系数低80.3%。所制备的MFC/HDPE复合材料有望为汽车制造和工程的发展铺平道路。

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