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Cotton cellulose nanofiber-reinforced high density polyethylene composites prepared with two different pretreatment methods

机译:两种预处理方法制备的棉纤维素纳米纤维增强高密度聚乙烯复合材料

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The reinforcing effect of cellulose nanofibers (CNF), individualized from cotton fibers subjected to a chemical process and a grinding process, has been investigated using high density polyethylene (HDPE) as matrix. In order to solve the agglomeration problem of cotton nanofiber in non-polar HDPE, two pretreatment methods have been used prior to the extrusion process, one method was relative to the physical pretreatment, and the other corresponded to the polyoxyethylene (PEO) dispersion agent method. The dispersion of cotton CNF in HDPE and reinforcing effect of cotton CNF on HDPE with the two preparation methods were made a comparison. From the SEM images observation, a good dispersion effect and an ideal network structure of the cotton CNF/HDPE composites could be achieved via two preparation methods. However, PEO dispersion agent method could improve the CNF dispersion much better than the physical pretreatment method, but unfortunately reducing the aspect ratio of the cotton CNF. Addition of cotton CNF clearly increased the bending strength (MOR) and bending modulus (MOE) of HDPE. The MOR and MOE of cotton CNF/HDPE composites with the physical pretreatment method were much higher than those of the nanocomposites with the PEO dispersion agent method. A comparative study was also made to find out the effect of two cellulose based nanofillers (CNF and nanocrystalline cellulose (NCC)) on the rheological, thermal, and mechanical properties of HDPE. The results demonstrated that cotton CNF had a better reinforcing effect on HDPE than NCC, while NCC could decrease the thermal expansion of the nanocomposites more significantly. (C) 2014 Elsevier B.V. All rights reserved.
机译:使用高密度聚乙烯(HDPE)作为基质,研究了纤维素纳米纤维(CNF)的增强作用,该纤维是从经过化学处理和研磨处理的棉纤维中分离出来的。为了解决棉纳米纤维在非极性高密度聚乙烯中的团聚问题,在挤出工艺之前已经使用了两种预处理方法,一种相对于物理预处理,另一种对应于聚氧乙烯(PEO)分散剂方法。 。比较了两种制备方法对棉CNF在HDPE中的分散性和棉CNF对HDPE的增强作用。从SEM图像观察,可以通过两种制备方法获得棉CNF / HDPE复合材料良好的分散效果和理想的网络结构。然而,PEO分散剂方法可以比物理预处理方法更好地改善CNF分散性,但是不幸的是降低了棉CNF的长径比。添加棉质CNF明显增加了HDPE的弯曲强度(MOR)和弯曲模量(MOE)。物理预处理方法的棉CNF / HDPE复合材料的MOR和MOE远高于PEO分散剂方法的纳米复合材料。还进行了一项比较研究,以发现两种纤维素基纳米填料(CNF和纳米晶体纤维素(NCC))对HDPE的流变,热学和机械性能的影响。结果表明,棉CNF对HDPE的增强作用优于NCC,而NCC可以更明显地降低纳米复合材料的热膨胀。 (C)2014 Elsevier B.V.保留所有权利。

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