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Investigation of changes in crystalline and amorphous structure during deformation of nano-reinforced semi-crystalline polymers by space-resolved synchrotron SAXS and WAXS

机译:通过空间分辨的同步调节露水和蜡对纳米增强半晶聚合物变形过程中结晶和无定形结构变形的研究

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Complex structural changes occur in semi-crystalline polymers during deformation. In (nano-)filled systems the situation becomes even more complicated, since not only phase changes may take place, but also local (interfacial) failure between phases may occur. To help identify specific processes taking place within these systems, simultaneous small- and wide-angle X-ray scattering (SAXS/WAXS) measurements were performed using synchrotron radiation during in situ deformation. Using a highly focused beam, spatially resolved local information can be extracted by scanning the beam across the deformed/damaged region within the sample. The characteristic changes in the different phases are presented and discussed. While the study of WAXS patterns gives insight into the orientation and dimensions of the crystallites, SAXS provides information about the mutual arrangement of phases and the interfacial failure phenomena. Based on the analysis of the results obtained in our experiments it will be shown that the first changes in the crystalline phase appear long before macroscopic yielding of the sample is reached, i.e. the onset of irreversible deformation takes place. In the post-yield regime radical changes are observed in bom me long- and short-range structures. It is concluded that the presence of nano-fillers exerts a strong influence on the establishment of microcrystalline structure, and hence also on the deformation behaviour at the microscopic scale.
机译:变形时发生在半结晶聚合物复合物的结构变化。在一个充满(纳米)系统的情况变得更加复杂,因为不仅相位变化可能会发生,但也可发生相间局部(界面)失败。为了帮助识别服用这些系统内发生的特定的工艺,原位变形期间,使用同步加速器辐射进行同时的小型和广角X射线散射(SAXS / WAXS)测量。使用高度聚焦光束,空间分辨的本地信息可以由样品内扫描整个变形/损坏的区域的光束被提取。在不同阶段的特性变化介绍和讨论。虽然WAXS模式研究提供了洞察晶体的取向和尺寸,SAXS提供有关阶段的相互布置和界面故障现象的信息。根据我们的实验中获得的结果的分析将示出的是,在结晶相的第一变化出现之前很久宏观屈服样品达到的,即不可逆变形的发生而发生。在后收率制度彻底改变当在BOM我长期和短程结构中观察到。可以得出结论,纳米填料的存在表现出对建立微晶结构的强烈影响,因此也对在微观尺度的变形行为。

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