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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Temperature dependence of polymorphism in electrospun nanofibres of PA6 and PA6/clay nanocomposite
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Temperature dependence of polymorphism in electrospun nanofibres of PA6 and PA6/clay nanocomposite

机译:PA6和PA6 /粘土纳米复合材料电纺纳米纤维中多态性的温度依赖性

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摘要

Polymorphism found in nanofibres of polyamide 6(PA6)and PA6/clay nanocomposite(PA6-NC),prepared by an electrospinning process,was studied by transmission electron microscopy(TEM)and variable-temperature wide angle X-ray scattering(WAXS),and compared with the polymorphic changes occurring in the pre-electrospun bulk materials.TEM results,concerning morphology and dispersion of the nanoclays,reveal that the produced electrospun nanofibres have an average diameter of 50 nm,and nanoclays are much more uniformly dispersed in the electrospun PA6-NC fibres than in the pristine PA6-NC.According to WAXS measurements,both types of electrospun nanofibres predominantly consist of gammalpha-form crystals of PA6.Upon heating,from room temperature to the melting point,a number of successive transitions are observed for both systems,namely,crystalline gamma to alpha',alpha' to a and alpha to the "amorphous" delta-form due to breakage of hydrogen bonds.On subsequent cooling,it has been observed,for the first time,that the development of crystalline forms for both systems is quite different from each other.The molten electrospun pure PA6 fibres first crystallize in the high temperature alpha'-form,and then they show the room temperature alpha-form.For these nanofibres,during a temperature cycle of heating and cooling,the initial gammalpha-form crystals completely turn into the alpha-form crystals as in bulk PA6.In contrast,for the electrospun nanofibres of the PA6-NC,the gammalpha-form crystals are preserved after completing a thermal cycle down to room temperature.The present findings on the evolution of polymorphism in the electrospun nanofibres of both systems provide useful information regarding their use as reinforcing elements in polymer composites.
机译:通过透射电镜(TEM)和可变温度广角X射线散射(WAXS)研究了通过静电纺丝工艺制备的聚酰胺6(PA6)和PA6 /粘土纳米复合材料(PA6-NC)纳米纤维中的多态性, TEM结果,关于纳米粘土的形貌和分散性,揭示了所生产的静电纺丝纳米纤维的平均直径为50 nm,并且纳米粘土更均匀地分散在静电纺丝中。 PA6-NC纤维要比原始PA6-NC纤维高。根据WAXS测量,两种类型的电纺纳米纤维均主要由PA6的gammaα型晶体组成。加热后,从室温到熔点,观察到许多连续的转变对于这两个系统,由于氢键的断裂,结晶的γ到α',α'到α'和α到“非晶”δ形式。在随后的冷却中,已经观察到第一次,两种系统的晶体形式发展都大不相同。熔融的电纺纯PA6纤维首先以高温α'形式结晶,然后呈现室温α形式。对于这些纳米纤维,在加热和冷却的温度循环中,最初的gammalpha形式的晶体完全变成了块状PA6中的α形式的晶体。相反,对于PA6-NC的电纺纳米纤维,gammalpha形式的晶体在这两个系统的电纺纳米纤维中多态性演变的当前发现提供了有关它们在聚合物复合材料中用作增强元素的有用信息。

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