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Desenvolvimento de nanocomp?3sitos a partir de blendas com matriz de PA6

机译:从与PA6基质共混物中开发nanocomp?3sitos

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In this work polymer/clay nanocomposites from blends with PA6 matrix were developed. Torque rheometry was used to evaluate the reactivity of different copolymers with PA6 and their influence on the PA6/clay system. The nanocomposites were characterized by X-ray Diffraction (XRD), Differential Scanning Calorimetry (DSC), mechanical properties and Scanning Electron Microscopy (SEM). Torque rheometry analysis showed that the PEgAA copolymer exhibited the highest reactivity with PA6 while the EG copolymer showed better interaction with the PA6/Clay system. XRD results indicated that PA6/CL20A system presented intercalated structure, while PA6/EG/CL20A systems presented a partially exfoliated structure. XRD and DSC analyses indicated that PA6/EG/CL20A system where the clay was pre-intercalated in PA6, the clay was located in the PA6 phase while in the system where the clay was pre-intercalated in the EG copolymer, the clay was located in the EG phase. The PA6/EG/CL20A system where the clay was pre-intercalated into PA6 presented balanced modulus and impact strength properties when compared to PA6. SEM tests showed that the clay is well dispersed in the PA6/CL20A and PA6/EG/CL20A systems.
机译:在这项工作中,开发了与PA6基质共混的聚合物/粘土纳米复合材料。扭矩流变法用于评估不同共聚物与PA6的反应性及其对PA6 /粘土体系的影响。纳米复合材料的特征在于X射线衍射(XRD),差示扫描量热法(DSC),机械性能和扫描电子显微镜(SEM)。扭矩流变分析表明,PEgAA共聚物与PA6的反应性最高,而EG共聚物与PA6 / Clay的相互作用更好。 XRD结果表明PA6 / CL20A体系呈插层结构,而PA6 / EG / CL20A体系呈部分剥离结构。 XRD和DSC分析表明,PA6 / EG / CL20A体系中的粘土预先插入PA6中,粘土位于PA6相中,而在粘土中预先插入EG共聚物中的体系中,粘土位于在EG阶段。与PA6相比,将粘土预先插入PA6的PA6 / EG / CL20A体系具有平衡的模量和冲击强度性能。 SEM测试表明,粘土在PA6 / CL20A和PA6 / EG / CL20A体系中分散良好。

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