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In-Situ Studies of Polymer Processing for Optimised Structure and Properties

机译:聚合物加工的原位研究,以优化结构和性能

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The transformation from a molten polymer to a crystalline solid product is a complex process. We show how special x-ray/rheology tools can be used to follow the development of structure during flow and the subsequent crystallization process and to identify the critical steps in this transformation. We have found that time-resolving x-ray scattering studies are a valuable approach, especially when coupled with other in-situ techniques such as neutron scattering and ex-situ methods such as electron microscopy. We illustrate the use of these tools with a study of the crystallization of polyethylene blends after being subject to shear flow in the melt. The resultant crystal textures and hence properties are strongly dependent on the shear strain imposed in the melt. High shear strain in the melt leads to a high density of row nuclei which serve to template the subsequent crystal growth. The microscopy on the final samples provides a complementary technique which offers valuable information on the spatial distribution of the morphology.
机译:从熔融聚合物到结晶固体产物的转变是复杂的过程。我们展示了如何使用特殊的X射线/流变学工具跟踪流动过程中结构的发展以及随后的结晶过程,并确定这种转变的关键步骤。我们已经发现,时间分辨X射线散射研究是一种有价值的方法,尤其是与其他原位技术(例如中子散射)和非原位方法(例如电子显微镜)结合使用时。我们通过研究熔体中的剪切流后对聚乙烯共混物结晶的研究,说明了这些工具的使用。所得的晶体织构以及因此的性能在很大程度上取决于施加在熔体中的剪切应变。熔体中的高剪切应变导致行核的高密度,其起到模板化后续晶体生长的作用。最终样品的显微镜检查提供了一种补充技术,可提供有关形态空间分布的有价值的信息。

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