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Study of Na-Montmorillonite–Polyamide Fiber/Polypropylene Hybrid Composite Prepared by Reactive Melt Mixing

机译:通过反应熔融混合制备的Na-Montmorillilililililililililililililililililililililililililililililililonite-聚酰胺 - 聚酰胺纤维/聚丙烯杂交复合物

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摘要

Hybrid composites of polypropylene (PP)/sodium montmorillonite (Na-MMT)/short polyamide fibers (PAfs) were prepared by reactive melt mixing in a Brabender plastograph. To enhance filler interactions within polypropylene, a functionalizing agent (FA) and a coupling agent were added to the Na-MMT and PAfs, respectively. An organic peroxide/sulfur mixture and tetramethylthiuram disulfide as an activator for sulfur were used to functionalize Na-MMT; on the other hand, the PAfs surface was treated using stearic acid. The aim of this study is to investigate how the morphology and the structural properties of 3, 5, and 7 wt% recycled functionalized sodium montmorillonite nanocomposites (f-Na-MMT) are affected by the presence of 5 wt% treated short polyamide fibers (t-PAfs). According to the obtained results, 5 wt% recycled f-Na-MMT/5 wt% t-PAfs/PP hybrid composite showed Na-MMT layers exfoliation. The nucleating effect of f-Na-MMT and t-PAfs was indicated by the differential scanning calorimetry (DSC) measurements. Morphological analysis of the hybrid composites was performed using scanning electron microscope (SEM) and optical polarized microscopy (POM), showing a good dispersion of the fibers with an interesting interfacial adhesion between the PP and t-PAfs phases. Hybrid composites of PP/f-Na-MMT/t-PAfs are considered for automotive industry.
机译:聚丙烯(PP)的杂化复合物/钠蒙脱石(钠蒙脱土)/短聚酰胺纤维(PAFS)通过反应性熔融在Brabender塑性计混合制备。为了增强聚丙烯内的填充物相互作用,将官能化剂(FA)和偶联剂分别加入Na-MMT和PAF。用作有机过氧化物/硫混合物和四甲基硫脲二硫化物作为硫的活化剂官能化Na-MMT;另一方面,使用硬脂酸处理PAFS表面。本研究的目的是研究如何通过5wt%处理的短聚酰胺纤维(以下5)条(基础)3,5和7wt%再循环官能化蒙脱土纳米复合材料(F-Na-MMT)的形态学和结构性能。 T-PAFS)。根据所得的结果,5wt%再循环的F-Na-MMT / 5wt%T-PAFS / PP杂化复合物显示Na-MMT层去角质。通过差示扫描量热法(DSC)测量表示F-Na-MMT和T-PAFS的成核效果。使用扫描电子显微镜(SEM)和光学显微镜偏振(POM),示出了纤维与PP和叔PAFS相之间的有趣的界面粘合性良好的分散体进行混杂复合材料的形态分析。 PP / F-NA-MMT / T-PAFS的混合复合材料被认为是汽车行业。

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