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Viscoelastic properties and melt rheology of novel polyamide 6/fluoroelastomer nanostructured thermoplastic vulcanizates

机译:新型聚酰胺6 /含氟弹性体纳米结构的热塑性硫化橡胶的粘弹性和熔体流变学

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摘要

The present article reports viscoelastic properties and melt rheology of novel nanostructured thermoplastic vulcanizates (TPVs) consisting of dispersed nanodimensional fluoroelastomer (FKM) particles into the continuous polyamide (PA6) matrix. The influence of dynamic vulcanization on the above properties of the blends was reported. The storage modulus and loss modulus were plotted against reduced frequency to understand the behavior of nanostructured TPVs. PA6/FKM TPVs showed pseudoplasticity and obeyed cross viscosity model. Insight into how the crosslink density of TPVs affects the rheological response was discussed. Also, a new relationship of zero shear viscosity (eta (0)) with the crosslink density of TPVs was proposed to gain insight into dynamic vulcanization. It was found that up to a certain amount of curative concentration, eta (0) depends upon the crosslink density to a power equal to 3.4 and is roughly proportional to the crosslink density on further increase of curative concentration. van Gurp-Palmen plot of phase angle versus reduced complex modulus indicated the droplet-matrix morphology of the PA6/FKM blends which was further confirmed from field emission scanning electron microscopy and atomic force microscopy studies, where FKM nanoparticles (60-80 nm) were the dispersed phase. Various melt elastic properties of TPVs such as die swell, first normal stress difference, recoverable shear strain, and apparent elasticity were measured and analyzed. TPV extrudates were examined using surface finish and roughness values. TPVs exhibited smoother extrudate surface than reported earlier. Extrudate surface roughness from atomic force microscopy was used to analyze the processing behavior of TPVs.
机译:本文报道了新型纳米结构的热塑性硫化橡胶(TPV)的粘弹性和熔体流变特性,这种新型硫化橡胶(TPV)由分散的纳米级氟弹性体(FKM)颗粒分散到连续聚酰胺(PA6)基质中。报道了动态硫化对共混物上述性能的影响。将储能模量和损耗模量相对于降低的频率作图,以了解纳米结构TPV的行为。 PA6 / FKM TPV表现出假塑性并遵循交叉粘度模型。讨论了对TPV的交联密度如何影响流变响应的见解。此外,提出了零剪切粘度(η(0))与TPV交联密度的新关系,以了解动态硫化。已经发现,直到一定量的固化剂浓度,η(0)取决于交联密度至等于3.4的功率,并且随着固化剂浓度的进一步增加而大致上与交联密度成比例。 van Gurp-Palmen相角对降低的复数模量的曲线表明PA6 / FKM共混物的液滴-基质形态,这在场发射扫描电子显微镜和原子力显微镜研究中得到了进一步证实,其中FKM纳米颗粒(60-80 nm)为分散相。测量并分析了TPV的各种熔体弹性,如模头膨胀,第一法向应力差,可恢复的剪切应变和表观弹性。使用表面光洁度和粗糙度值检查TPV挤出物。 TPV的挤出物表面比以前报道的要光滑。使用原子力显微镜观察挤出物的表面粗糙度来分析TPV的加工行为。

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