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Preparation of Polypropylene Composites with High Levels of Coir Short Fiber for use in Products by injection

机译:用注射用高水平的椰壳用高水平的椰壳制备用于产品的产品

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The main objective of this investigation was to study the properties of composites of polypropylene (PP) containing different proportions (20, 40 and 60% wt%) of coir short fiber (natural vegetable fiber) without treatment of fibers, for use in products by injection with applications in the automotive industries, construction and other segments. Samples were prepared in a only stage using a high intensity thermokinetic mixer (K-Mixer). Additives were used in the mass fraction of 3 wt% compatibilizer (PP-g-MA), 2.2 wt% processing additive and 0.12 wt% thermal antioxidant. The composites were characterized by tensile test according to ASTM D638-10. The surface properties of the polymeric matrix with additives were studied by determining the contact angle (CA) in a sessile drop tensiometer and the carbonyl index (CI) by Fourier-transform infrared spectroscopy (FTIR). Thermal properties of the PP and the composition were evaluated by thermogravimetric test, and the interface of the fiber and the matrix in the composites were evaluated using images from scanning electron microscopy (SEM). The CA analysis showed that the PP matrix with additives has become less hydrophobic and the FTIR and the CI that there was a better stabilization of the PP with additives. There was an increase in thermal stability of the composites for all fiber content, which was up to 15°C above PP for coir fiber composites. In the Young's modulus values showed that the inclusion of fibers reinforced the polymeric matrix and increased the stiffness of the composites, especially in composites containing 60% (wt%) in which the values were -1.7 times greater than the polypropylene. Images of micrographs showed the interaction of the fiber in the matrix and that despite the hydrophilic character of the fibers and hydrophobic character of the PP, the composites showed non-homogeneous interfaces. These findings confirm the feasibility of using high level of coir fiber in polypropylene composites even without pretreatment of the fibers and the preparation of samples by injection.
机译:本研究的主要目的是研究含有不同比例(20,40和60%)的椰壳短纤维(天然植物纤维)的聚丙烯(PP)复合材料的性质,而不用纤维处理,用于产品用汽车行业,建筑和其他段中的应用注射。使用高强度热敏​​混合器(K型混合器)在唯一阶段制备样品。添加剂用于3wt%增容剂(PP-G-MA),2.2wt%加工添加剂和0.12wt%热抗氧化剂的质量分数。根据ASTM D638-10,通过拉伸试验表征复合材料。通过傅立叶变换红外光谱法(FTIR)测定术式滴眼计和羰基指数(CI)中的接触角(CA),研究了聚合物基质的表面性质。通过热重试验评估PP和组合物的热性能,并使用扫描电子显微镜(SEM)的图像评估纤维和复合材料中的基质的界面。 CA分析表明,具有添加剂的PP基质变得较小,并且FTIR和CI具有更好的PP与添加剂的稳定性。所有纤维含量的复合材料的热稳定性增加,其高达15℃的PP,用于基准纤维复合材料。在杨氏模量值中,表明纤维增强了聚合物基质并增加了复合材料的刚度,尤其是在含有60%(wt%)的复合材料中,其中值比聚丙烯大的值均为-1.7倍。微图的图像显示纤维在基质中的相互作用,尽管纤维的亲水性和PP的疏水性,复合材料显示出非均匀的界面。这些发现即使在没有预处理纤维和通过注射制备样品的预处理也证实了使用高水平的基因纤维的可行性。

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