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Physical properties of polypropylene composites with hydrophobized cellulose powder by soybean oil

机译:大豆油与疏水化纤维素粉制聚丙烯复合材料的物理性能

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Cellulose materials have attracted lots of interest as potential natural fillers in the production of green polymer composites because they are ecofriendly and economic. In this study, to improve the interfacial bonding strength between cellulose powder and a hydrophobic polypropylene (PP) matrix, the surface hydrophobization of cellulose powder by soybean oil was carried out via a simple transesterification reaction procedure. Weight change measurements, Fourier transform infrared spectroscopy, and compatibility testing were used to quantitatively and qualitatively analyze the hydrophobization of the cellulose powder. By changing the hydrophobization conditions, the soybean oil content attached to the cellulose powder changed from 8.0 to 57.8%. PP composites with 20% of each hydrophobized cellulose powder were prepared by melt blending followed by compression molding. The mechanical properties of the PP composites were investigated with a universal testing machine and an Izod impact tester. Compared to the composite with pristine cellulose powder, the PP composite with the hydrophobized cellulose powder and an attached soybean oil content of 29.6% showed largely increased impact strength (46.3%), tensile strength (47.5%), and elongation at break (27.3%) values. The scanning electron microscopy images for the fracture surfaces of the composites showed that the hydrophobization induced much stronger interfacial bonding between the PP matrix and cellulose powder. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 42929.
机译:纤维素材料作为绿色聚合物复合材料生产中的潜在天然填料已引起人们广泛的关注,因为它们既环保又经济。在这项研究中,为提高纤维素粉末与疏水性聚丙烯(PP)基体之间的界面结合强度,通过简单的酯交换反应程序,大豆油对纤维素粉末进行了表面疏水化处理。重量变化测量,傅立叶变换红外光谱和相容性测试用于定量和定性分析纤维素粉末的疏水化作用。通过改变疏水化条件,附着在纤维素粉末上的大豆油含量从8.0变为57.8%。通过熔融共混然后压缩成型制备具有每种疏水化纤维素粉末20%的PP复合材料。用万能试验机和艾佐德冲击试验机研究了聚丙烯复合材料的机械性能。与含原始纤维素粉的复合材料相比,含疏水化纤维素粉和附加大豆油含量为29.6%的PP复合材料显示出大大提高的冲击强度(46.3%),抗张强度(47.5%)和断裂伸长率(27.3%) )值。复合材料断裂表面的扫描电子显微镜图像显示,疏水化作用导致PP基体与纤维素粉末之间的界面键强得多。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,42929。

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