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首页> 外文期刊>European Polymer Journal >Structural evolution of melt-drawn transparent high-density polyethylene during heating and annealing: Synchrotron small-angle X-ray scattering study
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Structural evolution of melt-drawn transparent high-density polyethylene during heating and annealing: Synchrotron small-angle X-ray scattering study

机译:熔体拉伸透明高密度聚乙烯在加热和退火过程中的结构演变:同步加速器小角度X射线散射研究

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摘要

The morphological development of melt-drawn transparent high-density polyethylene during heating was investigated employing in-situ synchrotron small-angle X-ray scattering (SAXS) technique. The results confirm that at lower temperatures only meridional scattering peaks aligned perpendicular to the extensional flow direction can be observed, indicating a highly oriented lamellar crystallite structure; whereas at higher temperatures an equatorial streak additional to the layer-like meridional scattering pattern develops, reflecting the presence of shish-kebab-like objects in the specimen under investigation. Upon heating, the average thickness of the kebab crystals remains essentially unaffected below 110 °C, and subsequently the selective melting of the less stable kebabs proceeds yielding thicker layered lamellar crystals. When the temperature is raised to 131 °C, the shish-like formation and the thermally stable kebab crystals melt simultaneously. In addition, the microstructure of the melt-drawn specimen subjected to annealing at elevated temperatures was probed at room temperature. As opposed to the SAXS patterns registered at high temperatures, the SAXS diagram measured after annealing shows no equatorial streak, suggesting that the cylindrical structures could be re-formed. This observation can be explained by assuming that the plate-like kebab crystals with their normal parallel to the stretching direction grow and impinge during cooling to room temperature due to secondary crystallization, which can be verified by in-situ SAXS experiments during annealing and subsequent cooling.
机译:利用原位同步加速器小角X射线散射(SAXS)技术研究了熔体拉伸透明高密度聚乙烯在加热过程中的形态发展。结果证实,在较低的温度下,只能观察到垂直于延伸流动方向排列的子午散射峰,表明高度取向的层状微晶结构。而在更高的温度下,除了层状子午线散射图案外,还会出现赤道条纹,这反映出所研究的样本中存在烤肉串状物体。加热后,烤肉串晶体的平均厚度在110°C以下基本上不受影响,随后不稳定的烤肉串的选择性熔化继续进行,从而产生了较厚的层状层状晶体。当温度升至131°C时,类似油烟的形成物和热稳定的烤肉串晶体会同时融化。另外,在室温下探查在高温下经受退火的熔体拉伸试样的微观结构。与高温下记录的SAXS模式相反,退火后测得的SAXS图没有赤道条纹,表明可以重新形成圆柱结构。可以通过假设法线平行于拉伸方向的板状串晶在二次冷却时冷却至室温期间长大并发生撞击来解释这一现象,这可以通过退火和后续冷却过程中的原位SAXS实验来验证。

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