首页> 外文期刊>Polimeros,Ciencia e Tecnologia >Prepara?§?£o e Caracteriza?§?£o de Nanofibras de Nanocomp?3sitos de Poliamida 6,6 e Argila Montmorilonita
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Prepara?§?£o e Caracteriza?§?£o de Nanofibras de Nanocomp?3sitos de Poliamida 6,6 e Argila Montmorilonita

机译:由聚酰胺6,6和蒙脱土的Nanocomp?3位聚合物制备和表征纳米纤维

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The search for polymeric fibers with diameters in the scale of nanometers has been the great objective of researchers and industry, since these fibers have many applications. They can be produced by an electrospinning process from a polymeric solution. In this work, nanocomposites?′ fibers of polyamide 66 and montmorillonite clay were obtained by melt mixing, following by electrospinning of the solution. Nanocomposites with three different clay concentrations, 2, 3 and 4 wt.%, were obtained by melt mixing, and solutions of these nanocomposites in formic acid were prepared at different concentrations. The influence of the clay addition, nanocomposites?′ solution concentration, variation of the applied electric field on the mixture and solutions properties and on the average diameter of the nanofibers was studied. Wide-angle X-ray (WAXD) and transmission electron microscopy (TEM) measurements showed that the process of electrospinning was efficient in the maintenance of the clay exfoliation in the fibers. Results of scanning electron microscopy (SEM) and differential scanning calorimetry (DSC) showed that the fibers had average diameters of the order of nanometers, were cylindrical and not porous, having low degree of crystallinity and residual solvent. The addition of clay increased slightly the viscosity of the polymeric solution, which increased the nanofibers average diameter. It was also observed that the increase in the fiber diameters was proportional to the increase of the polymer concentration in the solution. Regarding the applied electric field, it was observed a tendency to reduction in the average diameter of the fibers with the reduction of this parameter.
机译:寻找具有纳米级直径的聚合物纤维已经是研究人员和工业界的重要目标,因为这些纤维具有许多应用。它们可以通过电纺丝工艺从聚合物溶液中生产。在这项工作中,聚酰胺66和蒙脱石粘土的纳米复合纤维是通过熔融混合,随后电纺丝得到的。通过熔融混合获得具有三种不同粘土浓度(2、3和4 wt。%)的纳米复合材料,并以不同的浓度制备这些纳米复合材料在甲酸中的溶液。研究了粘土添加量,纳米复合材料的溶液浓度,施加的电场变化对混合物和溶液性能以及纳米纤维平均直径的影响。广角X射线(WAXD)和透射电子显微镜(TEM)测量表明,静电纺丝工艺可有效维持纤维中的粘土剥落。扫描电子显微镜(SEM)和差示扫描量热法(DSC)的结果表明,纤维的平均直径为纳米量级,为圆柱形且不多孔,具有低结晶度和残留溶剂。粘土的添加稍微增加了聚合物溶液的粘度,这增加了纳米纤维的平均直径。还观察到,纤维直径的增加与溶液中聚合物浓度的增加成比例。关于施加的电场,观察到随着该参数的减小纤维平均直径减小的趋势。

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