首页> 外文会议>International Conference on Mechanical, Manufacturing and Process Plant Engineering >Tensile, Flexural and Fracture Morphological Properties of Recycled Polypropylene (rPP) Filled Dried Banana Leaves Fibre (DBLF) Composites: Effects of DBLF Loadings
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Tensile, Flexural and Fracture Morphological Properties of Recycled Polypropylene (rPP) Filled Dried Banana Leaves Fibre (DBLF) Composites: Effects of DBLF Loadings

机译:再生聚丙烯(RPP)填充干燥香蕉叶纤维(DBLF)复合材料的拉伸,弯曲和断裂形态特性:DBLF负载的影响

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Global interest to reduce the use and disposal of non-degradable plastic based product, has enticed the initiative to develop eco-friendly plastic based composites. Green product require degradability attribute while maintaining superior mechanical and physical properties, especially for packaging application. For such reason, some portion of thermoplastic was substituted with some portion of plant based natural fibre, for composite production. In this study, recycled waste polypropylene (rPP) was filled with dried banana leaves fibre (DBLF), for rPP/DBLF composites fabrication. The effects of DBLF fibre loadings (0, 10, 20, 30 and 40 wt%) towards the resulted mechanical, physical and fracture morphological properties of rPP/DBLF composites were studied. Local supply of dried banana leaves was grinded into 60 μm of fibre length, and rPP was obtained from waste injection moulding scrapped and crushed beforehand into finer rPP particles. The rPP/DBLF composites were prepared through double steps compounding method using melting device (180°C, 80 rpm, 30 min) followed by an injection moulding process (185°C, 5 min of residence time). Later, produced rPP/DBLF composites were tested for their tensile strength (ASTM D638) and flexural strength (ASTM D790) performances. The relationships between the fracture morphology and composite strength was established through the observation of tensile fracture surfaces of the selected samples, under the Scanning Electron Microscope (SEM) observation. From the experimental work, interestingly it was found that, the tensile strength (TS) of rPP/DBLF composite has improved about +37.70% with 30 wt% of DBLF higher loading, while oppositely the maximum flexural strength (FS) had attained by 10 wt% of DBLF lower loadings, with only +22.60% of positive improvement, in comparison to unfilled rPP sample. Addition of DBLF into rPP prone to establish the strengthening outcome, but less stiffening effects. This could be explained by coarse DBLF particle morphology as observed by SEM, which encourage for mechanical interlocking with rPP for good matrix-filler interaction, that increased the TS, while better filler-filler segregation avoiding the filler domination which lowering the stiffness or FS. In overall, this study has successfully highlighted the potential of DBLF filler to enhance the properties of rPP, as another alternative of degradable plastic based composite for various promising applications.
机译:全球利益减少使用和处置不可降解的基于塑料产品的产品,已经诱导了开发环保塑料基复合材料的举措。绿色产品需要降解性属性,同时保持卓越的机械和物理性质,特别是用于包装应用。出于这种原因,将一些聚合物的热塑性塑料被植物的天然纤维取代,用于复合生产。在该研究中,用于RPP / DBLF复合材料的干燥香蕉叶纤维(DBLF)填充再循环的废聚丙烯(RPP)。研究了DBLF纤维载体(0,110,20,30和40重量%)对所产生的机械,物理和断裂形态特性的影响进行了研究过RPP / DBLF复合材料。将干燥的香蕉叶的局部供应研磨成60μm的纤维长度,并且从废物注塑成型中获得RPP,以便预先粉碎成更细的RPP颗粒。通过使用熔化器件(180℃,80rpm,30分钟)的双步复合方法,然后注射成型方法(185℃,停留时间为5分钟),制备RPP / DBLF复合材料。后来,测试生产的RPP / DBLF复合材料的拉伸强度(ASTM D638)和抗弯强度(ASTM D790)性能。通过观察所选择的样品的拉伸裂缝表面,在扫描电子显微镜(SEM)观察中建立断裂形态和复合强度之间的关系。从实验工作中,有趣的是,发现RPP / DBLF复合材料的拉伸强度(TS)改善了约+ 37.70%,占DBLF高负荷的30wt%,而相反,最大弯曲强度(FS)达到10与未填充的RPP样品相比,DBLF较低载荷的WT%较低的载荷,仅+ 22.60%。将DBLF进入RPP容易发生,建立强化结果,但效果较小。这可以通过SEM观察到的粗DBLF颗粒形态来解释,这促进了与RPP进行良好的基质填充物相互作用的机械互锁,这增加了TS,而更好的填充填料偏析避免了降低刚度或FS的填充统计。总体而言,该研究成功地突出显示DBLF填料的潜力,以提高RPP的性能,作为各种有前途应用的可降解塑料基的复合材料的另一种替代方案。

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