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Influence of Nanosilica/Polyurethane Composite Coating on IR Effectiveness and Visible Light Transmission Properties of Polyethylene

机译:纳米硅/聚氨酯复合涂层对聚乙烯IR有效性和可见光透射特性的影响

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Polyethylene (PE) film was coated with nanosilica-polyurethane layer using rod Mayer process. The nanosilica-polyurethane system was prepared by dispersing nanosilica (SiO_2) powder into solvent borne polyurethane (PU) binder under vigorous stirring. Various compositions of nanosilica-polyurethane slurry were prepared. A battery of characterization procedures were used to study the properties of the nanocomposite coating. ATR FTIR confirmed the presence of functional groups of silica and polyurethane. The uniformity of silica dispersion was probed using scanning electron microscopy (SEM). With the introduction of nanosilica to polyurethane binder, the visible light transmittance and ultra-violet (UV) radiation of nanosilica-polyurethane system reduced with increasing nanosilica content and coating layer thickness. The PE coated with nanocomposite containing 14wt% nanosilica and with 8 um coating thickness showed >88% transmittance in the visible light region. Infrared (IR) effectiveness (between 7 μm to 13 μm wavelengths) measurements by FTIR also showed that nanosilica/polyurethane system coating on PE film surface greatly improved the infrared opacity properties of PE film.
机译:使用杆Mayer工艺用纳米硅 - 聚氨酯层涂覆聚乙烯(PE)膜。通过将纳米硅(SiO_2)粉末在剧烈搅拌下将纳米硅(SiO_2)粉末分散到溶剂中的聚氨酯(PU)粘合剂中来制备纳米碱基 - 聚氨酯体系。制备各种纳米硅 - 聚氨酯浆料的组合物。用于研究纳米复合涂层的性质的表征程序。 ATR FTIR确认存在二氧化硅和聚氨酯的官能团。使用扫描电子显微镜(SEM)探测二氧化硅分散体的均匀性。随着纳米硅藻的引入聚氨酯粘合剂,可见光透射率和纳米三硅 - 聚氨酯系统的紫外线(UV)辐射随着纳米碱含量的增加而降低。涂有含有14wt%纳米硅和8μm涂层厚度的纳米复合材料,在可见光区域中显示出> 88%的透射率。 FTIR的红外(IR)有效性(7μm至13μm波长)测量也显示出PE膜表面上的纳米硅/聚氨酯系统涂层大大提高了PE膜的红外不透明度特性。

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