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首页> 外文期刊>Journal of synchrotron radiation >Simultaneous birefringence, small- and wide-angle X-ray scattering to detect precursors and characterize morphology development during flow-induced crystallization of polymers
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Simultaneous birefringence, small- and wide-angle X-ray scattering to detect precursors and characterize morphology development during flow-induced crystallization of polymers

机译:同时双折射,小角度和广角X射线散射,以检测前体并表征聚合物在流动诱导的结晶过程中的形态发展

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摘要

An experimental configuration that combines the powerful capabilities of a short-term shearing apparatus with simultaneous optical and X-ray scattering techniques is demonstrated, connecting the earliest events that occur during shear-induced crystallization of a polymer melt with the subsequent kinetics and morphology development. Oriented precursors are at the heart of the great effects that flow can produce on polymer crystallization (strongly enhanced kinetics and formation of highly oriented crystallites), and their creation is highly dependent on material properties and the level of stress applied. The sensitivity of rheo-optics enables the detection of these dilute shear-induced precursors as they form during flow, before X-ray techniques are able to reveal them. Then, as crystallization occurs from these precursors, X-ray scattering allows detailed quantification of the characteristics and kinetics of growth of the crystallites nucleated by the flow-induced precursors. This simultaneous combination of techniques allows unambiguous correlation between the early events that occur during shear and the evolution of crystallization after flow has stopped, eliminating uncertainties that result from the extreme sensitivity of flow-induced crystallization to small changes in the imposed stress and the material. Experimental data on a bimodal blend of isotactic polypropylenes are presented. (C) 2008 International Union of Crystallography.
机译:实验配置结合了短期剪切设备的强大功能以及同时的光学和X射线散射技术,将聚合物熔体在剪切诱导结晶过程中发生的最早事件与随后的动力学和形态发展联系起来。定向的前体是流动对聚合物结晶产生巨大影响的核心(强烈增强了动力学并形成了高度定向的微晶),它们的产生在很大程度上取决于材料性能和施加的应力水平。流变光学的灵敏度使得能够在X射线技术能够揭示它们之前在流动过程中检测到这些稀剪切诱导的前体。然后,由于从这些前体发生结晶,X射线散射允许对由流动诱导的前体成核的微晶生长的特征和动力学进行详细的定量。这种技术的同时组合使剪切过程中发生的早期事件与流动停止后结晶的演化之间具有明确的相关性,消除了由流动引起的结晶对施加的应力和材料的微小变化的极端敏感性所导致的不确定性。给出了全同立构聚丙烯双峰共混物的实验数据。 (C)2008国际晶体学联盟。

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