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首页> 外文期刊>Journal of Experimental Nanoscience >Damage tolerance behaviour of cloisite 15A incorporated recycled polypropylene nanocomposites and bionanocomposites
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Damage tolerance behaviour of cloisite 15A incorporated recycled polypropylene nanocomposites and bionanocomposites

机译:Cloisite 15A掺入的再生聚丙烯纳米复合材料和Bionanocomposites的损伤耐受行为

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In the present investigation, recycled polypropylene (rPP) used as a matrix was modified by incorporating nanofillers through melt blending technique to prepare a masterbatch of nanocomposites. Untreated sisal fibre and mercerised sisal fibres were further incorporated into the nanocomposites for the preparation of bionanocomposites. Bionanocomposites containing 40 wt% of UT fibre and 5 wt% of MA-g-PP revealed an increase in the tensile strength and modulus to the tune of 27% and 370%, respectively, compared to rPP. The flexural strength and modulus also increased to the tune of 129% and 269%, respectively, compared to rPP. Further, the surface treatment of the fibre slightly increased the mechanical properties and stiffness of bionanocomposites. Interfacial strength between fibre and matrix was also evaluated by using Turcsanyi and Sato–Furukawa models. Damage tolerance of rPP nanocomposites and its bionanocomposites was evaluated using single-edge-notch specimens. The notch length ‘a ’ to width ‘W ’ ratios, a /W , were chosen as 0.3, 0.45 and 0.6. The nanocomposites showed better damage tolerance as compared to the rPP matrix. The corrugated structure with increased fractured surface area was observed in scanning electron microscopy. Better dispersion of clay in the nanocomposites was observed in transmission electron microscopy.
机译:在本研究中,通过熔融共混技术掺入纳米填料以制备纳米复合材料母料,对用作基质的回收聚丙烯(rPP)进行了改性。将未处理的剑麻纤维和丝光剑麻纤维进一步掺入纳米复合材料中,以制备生物纳米复合材料。与rPP相比,包含40 wt%的UT纤维和5 wt%的MA-g-PP的Bionanocomposites显示出拉伸强度和模量分别增加了27%和370%。与rPP相比,抗弯强度和模量也分别提高了129%和269%。此外,纤维的表面处理略微提高了仿生纳米复合材料的机械性能和刚度。纤维和基体之间的界面强度也使用Turcsanyi和Sato-Furukawa模型进行了评估。 rPP纳米复合材料及其bionanocomposites的损伤容忍度使用单边缘缺口样品进行了评估。缺口长度“ a”与宽度“ W”的比率 a / W选择为0.3、0.45和0.6。与rPP基质相比,纳米复合材料表现出更好的损伤耐受性。在扫描电子显微镜中观察到具有增加的断裂表面积的波纹状结构。在透射电子显微镜下观察到粘土在纳米复合材料中更好的分散。

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