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Effect of halloysite nanotube on microstructure, rheological and mechanical properties of dynamically vulcanized PA6/NBR thermoplastic vulcanizates

机译:埃洛石纳米管对动态硫化PA6 / NBR热塑性硫化橡胶的微观结构,流变和力学性能的影响

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Dynamically vulcanized thermoplastic vulcanizate (TPV) nanocomposites based on polyamide-6 (PA6) and acrylonitrile butadiene rubber (NBR) reinforced by halloysite nanotubes (HNT) were prepared via a direct melt mixing process. The effects of HNT on the physical, mechanical, and rheological properties of nanocomposites were investigated. The prepared PA6/NBR/HNT nanocomposites were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), differential scanning colorimeter (DSC), dynamic mechanical thermal analysis (DMTA), and rheological measurements. The morphology study of prepared nanocomposites shows that the introduction of HNT into the PA6 phase causes a decrease in the size of NBR droplets. The mechanical measurements revealed that Young's modulus of TPV nanocomposites increased with the HNT loading up to 54%. DMTA results show that the introduction of 10 wt% of HNT into the PA6/NBR TPV leads to a 30% increase in storage modulus. The rheological measurements revealed that the storage modulus of nanocomposites has an increase of more than 200% in the presence of 7 wt% of HNT loading. Analytical stiffness modeling of Young's modulus of the TPV nanocomposites was investigated using Hui-Shia and Wu models. Both models have some deviations from experimental results and been modified to predict Young's modulus of the nanocomposites containing HNT with more precisions. The viscosity behavior of TPV nanocomposites was studied using a Carruea-Yasuda model and showed that the yield stress of nanocomposites increases with higher HNT loadings, indicating the formation of a nanotube network along with NBR phase network.
机译:通过直接熔融混合工艺制备了基于聚酰胺-6(PA6)和由埃洛石纳米管(HNT)增强的丙烯腈丁二烯橡胶(NBR)的动态硫化热塑性硫化橡胶(TPV)纳米复合材料。研究了HNT对纳米复合材料的物理,机械和流变性能的影响。使用X射线衍射(XRD),扫描电子显微镜(SEM),差示扫描色度计(DSC),动态机械热分析(DMTA)和流变学测量对制备的PA6 / NBR / HNT纳米复合材料进行表征。制备的纳米复合材料的形态研究表明,将HNT引入PA6相会导致NBR液滴尺寸的减小。力学测量表明,随着HNT含量的增加,TPV纳米复合材料的杨氏模量增加。 DMTA结果表明,将10 wt%的HNT引入PA6 / NBR TPV会使储能模量增加30%。流变学测量表明,在HNT负载量为7 wt%的情况下,纳米复合材料的储能模量增加了200%以上。使用Hui-Shia和Wu模型研究了TPV纳米复合材料的杨氏模量的分析刚度模型。两种模型均与实验结果存在一些偏差,并已进行了改进以更精确地预测含HNT的纳米复合材料的杨氏模量。使用Carruea-Yasuda模型研究了TPV纳米复合材料的粘度行为,结果表明,随着HNT含量的增加,纳米复合材料的屈服应力会增加,这表明纳米管网络与NBR相网络一起形成。

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