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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Using Synchrotron-Based FT-IR Microspectroscopy to Study Erucamide Migration in 50-μm-thick Bilayer Linear Low-Density Polyethylene and Polyolefin Plastomer Films
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Using Synchrotron-Based FT-IR Microspectroscopy to Study Erucamide Migration in 50-μm-thick Bilayer Linear Low-Density Polyethylene and Polyolefin Plastomer Films

机译:使用基于同步加速器的FT-IR光谱技术研究50μm厚的双层线性低密度聚乙烯和聚烯烃弹性体膜中芥酸酰胺的迁移

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摘要

The diffusion of additives in thick (~500 μm) single layer and multilayer films has been characterized using FT-IR microspectroscopy.~(1,2) The objective of this research was to investigate additive migration and concentration profiles in coextruded multilayer films of industrially relevant thicknesses. In particular, the investigation focused on the migration of an crucamide slip agent in 50-μm-thick coextruded bilayer films of linear low-density polyethylene (LLDPE) and a polyolefin plastomer (POP). Erucamide concentration profiles were successfully mapped using synchrotron-based FT-IR microspectroscopy. The synchrotron radiation helped to achieve a higher spatial resolution for the thin films. Meticulous sample preparation was needed to map the thin film samples. Results with FT-IR microspectroscopy showed that the additive-concentration profiles were relatively uniform across the multilayer-film thickness irrespective of the intended initial additive distribution. For example, a bilayer planned for 1 wt % erucamide in an LLDPE layer and no erucamide in a POP layer showed significant additive migration into the POP layer at the extrusion rates used. FT-IR microspectroscopy results also showed that more erucamide migrated to the surface of a POP layer than an LLDPE layer. Attenuated total reflectance (ATR) FT-IR spectroscopy was used to confirm the time-dependent increase of erucamide surface concentration and that the increase was more pronounced at the surface of the POP layers.
机译:FT-IR光谱分析了添加剂在厚(〜500μm)单层和多层膜中的扩散。〜(1,2)的目的是研究工业共挤多层膜中添加剂的迁移和浓度分布相关厚度。尤其是,研究的重点是在线性低密度聚乙烯(LLDPE)和聚烯烃塑性体(POP)的50μm厚共挤双层薄膜中,crucamide增滑剂的迁移。使用基于同步加速器的FT-IR显微技术成功绘制了芥酸酰胺浓度分布图。同步加速器辐射有助于实现更高的薄膜空间分辨率。需要细致的样品制备以绘制薄膜样品的图。 FT-IR显微光谱法的结果表明,不管预期的初始添加剂分布如何,整个多层膜厚度的添加剂浓度分布都相对均匀。例如,计划在LLDPE层中使用1 wt%芥酸酰胺的双层,而在POP层中没有芥酸酰胺,则在使用的挤出速率下,添加剂会明显迁移到POP层中。 FT-IR光谱结果还表明,与LLDPE层相比,更多的芥酸酰胺迁移至POP层表面。使用衰减全反射(FTR-IR)光谱确认了芥酸酰胺表面浓度随时间的增加,并且这种增加在POP层的表面更为明显。

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