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首页> 外文期刊>Crystals >Simultaneous SAXS-WAXS Experiments on Semi-Crystalline Polymers: Example of PA11 and Its Brill Transition
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Simultaneous SAXS-WAXS Experiments on Semi-Crystalline Polymers: Example of PA11 and Its Brill Transition

机译:半结晶聚合物上的同时撒酷蜡实验:PA11的实例及其Brill过渡

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摘要

This manuscript of the special issue “Microstructural Evolution and Mechanical Behavior of Semi-Crystalline Polymers” aims to show that Small Angle X-ray Scattering (SAXS) and Wide Angle X-ray Scattering (WAXS) experiments performed simultaneously constitute a unique tool to obtain valuable information on the hierarchical structure of semi-crystalline polymers. These structural quantitative data are needed to model macroscopic properties of polymeric materials, for example their mechanical properties. To illustrate our point, we focus our study on the structure and morphology of polyamide 11. Through a simultaneous SAXS-WAXS experiment, we show that the absence of enthalpic signal in Differential Scanning Calorimetry (DSC) is not synonymous with the absence of structural and morphological evolution with temperature. The case of a thermally activated crystal–crystal transition, the Brill transition, is particularly detailed. Through this SAXS-WAXS study, we show, among other points, and for the first time, that the periodicity of crystalline lamellae (L P ) changes at the transition, probably due to a modification of the amorphous phase’s free volume at the Brill transition. We also explain the crucial role of annealing to stabilize polymeric materials that may experience temperature changes over their lifetime. The influence of the annealing on the perfection of crystalline structure, morphology and mechanical behavior is more particularly studied.
机译:这种特殊问题的手稿“半结晶聚合物的微观结构演化和力学行为”旨在表明小角度X射线散射(SAX)和广角X射线散射(蜡)实验同时构成了获得的独特工具关于半结晶聚合物的层次结构的有价值的信息。需要这些结构定量数据来模拟聚合物材料的宏观性质,例如它们的机械性能。为了说明我们的观点,我们专注于多酰胺11的结构和形态的研究。通过同时萨克斯 - 蜡实验,我们表明差分扫描量热法(DSC)中的焓信号不具有结构和结构的同义词温度的形态学。尤其详细描述热活化的晶体晶体过渡的情况,是Brill转变。通过这种萨克斯 - 蜡研究,除了其他要点之外,我们展示了结晶薄片(L P)在过渡时变化的周期性,可能是由于在Brill过渡时的无定形相自由体积的改变。我们还解释了退火的关键作用,以稳定可能在寿命中经历温度变化的聚合物材料。退火对结晶结构的完美,形态和力学行为的影响更具体地研究。

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