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UV curable transparent urethane-acrylate/clay nanocomposite coating materials with thermal barrier property

机译:具有热障性能的可紫外线固化的透明聚氨酯-丙烯酸酯/粘土纳米复合涂料

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摘要

The incorporation of organically modified montmorillonite (MMT) as thermal barriers into an UV curable urethane-acrylate based resin system was attempted to prepare nanocomposite coating materials with improved thermal barrier property using a two-step solution mixing process. The prepared nanocomposite sols were deposited on glass substrates using a bar coating method, and cured under radiation. We explored the correlation between the mixing time in association with shear stress imposed on clay agglomerates, and the resulting nanostructured morphology including the degree of exfoliation and dispersion state of the clay in the prepared nanocomposites. The effects of the nanoclay loading level on the properties and morphology of the nanocomposites were also investigated. As a result, it was revealed that with an appropriate level of clay loading at 5. wt.% and shear stress, high degree of intercalation and exfoliation structure with homogeneous clay dispersion in the matrix could be achieved, and for the nanocomposite-coated glass, the thermal barrier performance was noticeably enhanced by 72% over that of non-coated glass, while exhibiting fairly good optical transparency with light transmittance over 80%. In addition, the thermal stability and dynamic mechanical properties of the nanocomposites were also improved. It can be anticipated that a novel method for preparing the UV curable nanocomposite coatings on glass, which is presented in this study, will be utilized to fabricate the thermally insulated transparent window system.
机译:试图通过两步溶液混合工艺将有机改性的蒙脱石(MMT)作为热障剂掺入可UV固化的氨基甲酸酯-丙烯酸酯基树脂体系中,以制备具有改进的热障性能的纳米复合涂料。使用棒涂法将制备的纳米复合溶胶沉积在玻璃基板上,并在辐射下固化。我们探索了混合时间与施加在粘土团聚体上的切应力相关的混合时间与所得纳米结构形态的相关性,包括剥落程度和粘土在制备的纳米复合材料中的分散状态。还研究了纳米粘土负载量对纳米复合材料的性质和形态的影响。结果表明,在5.wt.%的适当粘土含量水平和剪切应力的情况下,可以实现高度的插层和剥落结构,使粘土在基质中均匀分散,并且对于纳米复合涂层玻璃,与未镀膜玻璃相比,隔热性能显着提高了72%,同时在透光率超过80%的情况下表现出了相当不错的光学透明性。此外,纳米复合材料的热稳定性和动态力学性能也得到改善。可以预见,这项研究中提出的一种在玻璃上制备可紫外线固化的纳米复合涂料的新方法将被用于制造隔热透明窗户系统。

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