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Microfibrillar composites based on polyamide/polyethylene blends. 1. Structure investigations in oriented and isotropic polyamide 6

机译:基于聚酰胺/聚乙烯共混物的微原纤复合材料。 1.定向和各向同性聚酰胺的结构研究6

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The present paper discloses the structural changes caused by heating of polyamide 6 (PA6) samples with different thermal and mechanical histories in the 30-240degreesC range. Wide and small-angle X-ray scattering (WAXS and SAXS) of synchrotron radiation, as well as solid-state nuclear magnetic resonance spectroscopy (NMR) measurements are performed. The NMR spectra show that in both isotropic and oriented samples there is a co-existence of alpha and gamma-PA6 crystalline forms. Deconvolution of the WAXS patterns is performed to follow the temperature dependence of the unit cell parameters of the alpha and gamma-forms and also of the equatorial (ECI) and total crystallinity indexes (CI), evaluating the contributions of the two crystalline phases. Estimates for the long spacing and for the average thicknesses of the crystalline (l(c)) and amorphous (l(a)) phases within the lamellae are calculated as a function of the heat treatment employing analysis of the linear correlation function calculated from the SAXS patterns. The X-ray results allowed the conclusion that upon heat treatment up to 160-200degreesC, intensive transitions between the PA6 crystalline forms take place, whereby the content of the initial major crystalline phase decreases and that of the initial minor one increases reaching almost 1: 1. Close to 200degreesC a general trend toward increasing the content of the a-form is registered. The influence of annealing and quenching after melting on the PA6 crystalline structure is also studied. (C) 2004 Elsevier Ltd. All rights reserved.
机译:本文揭示了由于加热30-240摄氏度范围内的不同热历史和机械历史的聚酰胺6(PA6)样品而引起的结构变化。进行同步加速器辐射的广角和小角X射线散射(WAXS和SAXS)以及固态核磁共振波谱(NMR)测量。 NMR光谱显示,在各向同性和定向样品中,都存在α和gamma-PA6晶体形式。进行WAXS图案的反卷积以遵循α和γ形式的晶胞参数以及赤道(ECI)和总结晶度指数(CI)的温度依赖性,从而评估两个晶相的贡献。薄层中晶相(l(c))和非晶相(l(a))的长间距和平均厚度的估算值是根据热处理的函数计算的,其中使用了分析线性相关函数的方法, SAXS模式。 X射线结果可以得出这样的结论:在高达160-200°C的温度下进行热处理时,PA6晶型之间发生了剧烈的转变,从而使初始主要晶相的含量降低,而初始次要晶相的含量几乎达到1: 1.接近200摄氏度,已记录出增加a形式含量的总体趋势。还研究了熔化后退火和淬火对PA6晶体结构的影响。 (C)2004 Elsevier Ltd.保留所有权利。

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