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首页> 外文期刊>Macromolecules >Accelerated a Relaxation Dynamics in the Exfoliated Nylon-11/Clay Nanocomposite Observed in the Melt and Semicrystalline State by Dielectric Spectroscopy
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Accelerated a Relaxation Dynamics in the Exfoliated Nylon-11/Clay Nanocomposite Observed in the Melt and Semicrystalline State by Dielectric Spectroscopy

机译:介电谱观察到的熔融和半结晶状态下剥离的尼龙11 /粘土纳米复合材料的弛豫动力学

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摘要

Melt state properties of nylon-11 and its exfoliated silicate nanocomposite were monitored during extrusion compounding using an on-line dielectric slit die sensor,and solid-state properties were probed off-line below the melting temperature by a dielectric spectrometer.A comprehensive relaxation master map for nylon-11 and its exfoliated clay nanocomposite featuring six relaxation modes in both melt and semicrystalline states revealed changes in molecular dynamics upon the addition of nanofillers.a relaxation was observed in the neat resin as well as the composite,and a Maxwell-Wagner-Sillars (MWS) relaxation was detected in the composite melt yet absent from the neat molten nylon.The MWS relaxation mode,which exhibited a broader relaxation time distribution and a much greater dielectric intensity compared to the a relaxation,resulted from polarization at the filler/polymer interfaces.MWS can be used to distinguish the neat polymer from the composite during real-time processing.The presence of exfoliated clay particles accelerated the a relaxation dynamics in the semicrystalline state as delaminated silicate platelets diminished the intermolecular cooperativity of the amorphous chains.Randomization of molecular dipoles upon increasing temperature was only observed in the neat nylon.Hindered molecular dipole orientation due to the rigid silicate fillers in the nanocomposite was observed.
机译:使用在线介电狭缝模头传感器在挤出复合过程中监测尼龙11及其片状硅酸盐纳米复合材料的熔融态性能,并通过介电谱仪离线测定低于熔融温度的固态性能。尼龙11及其剥落的粘土纳米复合材料的图谱显示熔体和半晶态均具有六种弛豫模式,表明添加纳米填料后分子动力学发生变化。在纯树脂以及复合材料和Maxwell-Wagner中观察到弛豫-在纯熔态尼龙中没有发现复合熔体中的锡拉(MWS)弛豫。与填充时的弛豫相比,MWS弛豫模式与弛豫相比具有更宽的弛豫时间分布和更大的介电强度,这是由于填料极化引起的/聚合物界面.MWS可用于在实时处理过程中将纯净聚合物与复合材料区分开来。剥落的粘土颗粒的存在加速了半结晶状态下的弛豫动力学,因为层状硅酸盐薄片减少了非晶链的分子间协同作用。仅在纯尼龙中观察到分子偶极子随温度升高而发生随机化。观察到纳米复合材料中的硅酸盐填料。

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