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Influence of Epoxide Levels in Epoxidized Natural Rubber (ENR) Molecules on Cure Characteristics, Dynamic Properties and Mechanical Properties of ENR/Montmorillonite Clay Nanocomposites

机译:环氧化天然橡胶(ENR)分子对ENR / MONTMORILLINTONITE粘土复合材料的固化特性,动态性能和力学性能的影响

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Nanocomposites based on epoxidized natural rubbers (ENRs) with various levels of epoxide groups (i.e., 10, 20, 30, 40 and 50 mol%) and organoclay were prepared by melt mixing process. The organoclay employed in this study was montmorillonite clay modified by octadecylamine (OC-MMT). Cure characteristics, dynamic properties and mechanical properties of ENRs nanocomposites filled with 5 phr of OC-MMT were studied. In all cases, X-ray diffraction results indicated intercalation of ENRs into the silicate interlayer as an increase in the interlayer distance of layered silicates was observed. The maximum torque and torque difference of ENRs nanocomposites increased with increasing levels of epoxide groups in ENRs. Additionally, it was also found that the tan lvalue at T_g of the ENR-50 nanocomposite was much lower than those of other types of ENRs nanocomposite. This indicates stronger interaction between ENR-50 and OC-MMT. However, ENR-50 nanocomposite showed the poorest elasticity in term of the tan δ value at the ambient temperature compared to other types of ENRs nanocomposites. A good balance between strength and elasticity was also observed in the ENR-30 nanocomposite. These results are also consistent with the observation that tensile strength and elongation at break of ENR-30 nanocomposite were higher than those of other types of ENRs nanocomposites.
机译:通过熔融混合过程制备基于环氧化天然橡胶(I.,10,20,30,40和50mol%)和有机粘土的纳米复合材料。本研究中使用的有机粘土是由十八烷基胺(OC-MMT)改性的Montmorillonite粘土。研究了恩培纳米复合材料的固化特性,动态性质和机械性能,填充有5phr的OC-MMT。在所有情况下,X射线衍射结果表明ENRES在硅酸盐中间层的插入,因为观察到层状硅酸盐的层间距离的增加。 ENRS纳米复合材料的最大扭矩和扭矩差异随着ENS中的环氧基团水平的增加而增加。另外,还发现恩-50纳米复合材料的T_G的Tan Lvalue远低于其他类型的ENRS纳米复合材料。这表明ENR-50和OC-MMT之间的相互作用更强。然而,与其他类型的ENRS纳米复合材料相比,ENR-50纳米复合材料显示在环境温度下的TANδ值的最贫困的弹性。在ENR-30纳米复合材料中也观察到强度和弹性之间的良好平衡。这些结果也与观察结果一致,即ENR-30纳米复合材料断裂的拉伸强度和伸长率高于其他类型的ENRS纳米复合材料。

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