Wang Guangfei, Zhou Jin, Wang Meimei, Zhang Yanbin, Zhang Yong, He Qiang
Key Laboratory of Aeronautical Special Rubber, Anyang Institute of Technology, Anyang, 455000, China.
Soft Matter. 2020 Jun 21;16(23):5514-5524. doi: 10.1039/d0sm00462f. Epub 2020 Jun 5.
The use of a silicone rubber composite insulator has become an important aspect to ensure the safe operation of an electrical power grid. This study introduces a preparation method of a superhydrophobic silicone rubber surface using a simple preparation process at low cost and with excellent performance, which can be used in the mass production of silicone rubber composite insulators. In this study, the combination of a compression molding process and a template method was used to prepare the product. A microstructure composed of numerous boat-shaped grooves was constructed on the surface of silicone rubber. The modification of a low surface energy material is not required. The static contact angle with water after the high-temperature treatment exceeds 150°, and the rolling angle is under 10°. Excellent performance has been observed in terms of self-cleaning effect, aging resistance, and mechanical and droplet bounce properties. It has been shown that the loss of superhydrophobic properties, due to the prolonged immersion in water, can be restored by a high temperature heating process.
使用硅橡胶复合绝缘子已成为确保电网安全运行的一个重要方面。本研究介绍了一种超疏水硅橡胶表面的制备方法,该方法制备工艺简单、成本低且性能优异,可用于硅橡胶复合绝缘子的大规模生产。在本研究中,采用模压成型工艺和模板法相结合来制备产品。在硅橡胶表面构建了由众多船形凹槽组成的微观结构。无需对低表面能材料进行改性。高温处理后与水的静态接触角超过150°,滚动角小于10°。在自清洁效果、耐老化性以及机械和液滴弹跳性能方面均观察到优异性能。结果表明,由于长时间浸泡在水中导致的超疏水性能丧失可通过高温加热过程恢复。