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High-performance water-based UV-curable soft systems with variable chain architecture for advanced coating applications

机译:具有用于高级涂层应用的高性能水基UV可固化软系统,可实现可变链架构

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摘要

Silicone-based materials and systems have played a key role over a century. In this work, surface and bulk characteristics of siloxane-modified water-based urethane-acrylate dispersions containing hydrophilic and hydrophobic soft segments with variable molecular weight and also a hard segment were tailored. Feeding and synthesis conditions were changed systematically to control over compatibility and softness of samples. FTIR, elemental analyses by proton and silicon nuclear magnetic resonances and dynamic light scattering were used to describe microstructure of dispersions. The effects of PDMS content and molecular weight on the composition property relationship was discussed in terms of contact angle, water absorption and mechanical properties. Addition of PDMS having high-molecular-weight as hydrophobic soft segment in polyurethane-acrylate system improved water repellency, as featured by a rise in contact angle from 72 to 102 degrees. The effect of photoinitiators type on C = C conversion rate was monitored by changing the polarity and hydroxyl group by real-time FTIR (RT-IR) spectroscopy. Physical and mechanical properties of UV-cured coatings like hardness, adhesion and flexibility were also examined. Siloxane-modified crosslinked films exhibited excellent flexibility and hydrophobic surface depending on soft segment type and content. Siloxane-modified water-based urethane-acrylate UV-cured film revealed high thermal-stability with negligible weight loss unless well-above 200 degrees C.
机译:基于硅氧烷的材料和系统在一个世纪中发挥了关键作用。在这项工作中,硅氧烷改性水基丙烯酸酯分散体的表面和块状特性含有可变分子量的亲水和疏水性软链段,也是硬链段的含有亲水和疏水性软链段。喂养和合成条件系统地改变,以控制样品的相容性和柔软性。 FTIR,通过质子和硅核磁共振的元素分析和动态光散射来描述分散体的微观结构。在接触角,吸水和机械性能方面讨论了PDMS含量和分子量对组合物性能的影响。在聚氨酯 - 丙烯酸酯体系中添加具有高分子量作为疏水性软链段的PDM,改善了防水性,从72至102度的接触角上升。通过实时FTIR(RT-IR)光谱改变极性和羟基,通过改变极性和羟基来监测光引发剂类型对C = C转化率的影响。还检查了紫外线固化涂层的物理和力学性能,如硬度,粘附和柔韧性。硅氧烷改性交联膜具有优异的柔韧性和疏水表面,这取决于软段类型和含量。硅氧烷改性的水基氨基甲酸酯 - 丙烯酸酯紫外线固化膜显示出高热稳定性,重量损失可忽略不计,除非高于200℃。

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