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首页> 外文期刊>Macromolecular Research >Synthesis of UV Curable, Highly Stretchable, Transparent Poly(urethane-acrylate) Elastomer and Applications Toward Next Generation Technology
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Synthesis of UV Curable, Highly Stretchable, Transparent Poly(urethane-acrylate) Elastomer and Applications Toward Next Generation Technology

机译:合成UV可固化,可高度拉伸,透明的聚(氨基甲酸丙烯酸酯)弹性体和朝向下一代技术的应用

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Here, highly stretchable and transparent UV curable poly(urethane-acrylate) elastomer has been synthesized by reacting urethane acrylate oligomer and two reactive diluents monomers. The synthesized elastomers can be stretched up to 600% and have high transparency of over 90% transmittance. The synthesized elastomers have been applied to several applications. Simple 3D model was printed with a 3D printer on the market Stretchable ionic conductors were fabricated by a facile method of adding salt with ionic conductivity. Similarly, the resin with beta-cyclodextrin, a cage-structured molecule, was cured and foam was generated simultaneously under the UV radiation. This research paves a new way for further development in applications of UV curable transparent elastomer and 3D printable elastomeric material.
机译:这里,通过使氨基甲酸酯丙烯酸酯低聚物和两种反应性稀释剂单体反应,合成了高度可伸缩和透明的UV可固化聚(氨基甲酸丙烯酸酯)弹性体。 合成的弹性体可以拉伸高达600%,并且具有超过90%的透射率透明度。 合成的弹性体已应用于几种应用。 简单的3D模型在市场上用3D打印机打印,可伸展离子导体通过加入具有离子电导率的盐的容纳方法制造。 类似地,在UV辐射下同时固化具有β-环糊精的树脂,笼式结构分子,并同时产生泡沫。 本研究铺平了一种新的途径,用于在UV可固化透明弹性体和3D可印刷弹性体材料的应用中进一步发展。

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