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From micro to nano: polypropylene composites reinforced with TEMPO-oxidised cellulose of different fibre widths

机译:从微量到纳米:用不同纤维宽度的喷射氧化纤维素增强的聚丙烯复合材料

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摘要

TEMPO-oxidised cellulose fibres are often explored as nano-reinforcement for polymers. However, it is unclear whether micrometre-sized TEMPO-oxidised cellulose fibres also possess similar reinforcing potential. In this work, we report the mechanical response of polypropylene (PP) composites reinforced with TEMPO-oxidised cellulose (TOC) of different fibre widths. Micrometre-sized TOC fibres (TOCF) containing sodium carboxylate (TOCF-Na) and free hydroxyl (TOCF-H) groups, as well as nano-sized TOC nanofibrils (TOCN) were produced from dissolving pulp and incorporated into PP matrix via melt-extrusion. It was found that model PP composites containing micrometre-sized TOCF-Na and TOCF-H possessed the highest tensile modulus of up to 2.5 GPa; 40% improvement over neat PP and 30% increase over PP/TOCN composite. No significant differences in the tensile strength of PP/TOCF-Na and PP/TOCF-H composites were observed when compared to neat PP. The incorporation of nano-sized TOCN into PP however, led to a 6% decrease in tensile strength. Single-edge notched beam fracture toughness test further showed that PP/TOCN composite possessed the lowest fracture toughness of 2.52 MPa m(1/2); a decrease of 18% over PP reinforced with micrometre-sized TOCF-Na and TOCF-H. Our study shows that micrometre-sized TOCFs serve as better reinforcement for polymers compared to nano-sized TOCN. This is attributed to the better dispersion of TOCF in the PP matrix. Furthermore, the presence of surface microfibrillation on TOCFs also enhanced the quality of the TOCF-PP interface through mechanical interlocking and local stiffening of the PP matrix.
机译:TEMPO氧化纤维素纤维通常被用作聚合物的纳米增强材料。然而,目前尚不清楚微米大小的TEMPO氧化纤维素纤维是否也具有类似的增强潜力。在这项工作中,我们报告了不同纤维宽度的TEMPO氧化纤维素(TOC)增强聚丙烯(PP)复合材料的机械响应。通过溶解纸浆制备微米级含羧酸钠(TOCF-Na)和游离羟基(TOCF-H)的TOC纤维(TOCF),以及纳米级TOC纳米纤维(TOCN),并通过熔融挤出将其并入PP基体中。研究发现,含有微米级TOCF-Na和TOCF-H的模型PP复合材料具有最高的拉伸模量,高达2.5GPa;与纯PP相比提高40%,与PP/TOCN复合材料相比提高30%。与纯PP相比,PP/TOCF-Na和PP/TOCF-H复合材料的拉伸强度没有显著差异。然而,将纳米尺寸的TOCN加入PP中,导致拉伸强度降低6%。单边缺口梁断裂韧性试验进一步表明,PP/TOCN复合材料的断裂韧性最低,为2.52MPa m(1/2);与使用微米级TOCF-Na和TOCF-H增强的PP相比,减少了18%。我们的研究表明,与纳米级TOCN相比,微米级TOCF可以更好地增强聚合物。这是因为TOCF在PP基体中的分散性更好。此外,TOCF表面微振动的存在还通过PP基体的机械联锁和局部硬化提高了TOCF-PP界面的质量。

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