首页
最新动态 交流合作 科研项目 论文著作 精彩瞬间 招生招聘
  • Composites Science and Technology:表面电导率对多壁碳纳米管/聚(ε-己内酯)复合材料电磁屏蔽的影响
  • 来源:王明教授个人网站 2022-10-03
  • 论文摘要:

    Herein, the effect of surface conductivity on microwave shielding effectiveness (SE) is discussed in the sandwiched multi-walled carbon nanotubes/poly(ε-caprolactone) (MWCNT/PCL) composites. The electrical conductivity on single or double-side surface of the composites is regulated by controlling different MWCNT loadings on the surface. The electromagnetic SE values of the MWCNT/PCL composites decrease with decreasing surface conductivity, and decline acutely when the surface becomes non-conductive. The shielding mechanism is investigated by a simulation and experimental study for the composites having different surface conductivity. The results indicate that the microwave reflection is very important to contribute the shielding performance of the composites. In addition, the effect of dielectric properties of surface layers on electromagnetic shielding performance was discussed for the composites with insulation surface. The composites with different polymers as insulting surface layers exhibit the close SE values, suggesting that the microwave shielding performance of the In/Con/In composites is irrelevant to the different polymer with different dielectric constant on the surface layers. Furthermore, the conductive network on surface exerts a great influence on microwave attenuation because of the enhancement on surface conduction loss and polarization loss. Therefore, the surface conductivity is a non-negligible factor for designing materials with excellent microwave shielding performance.

    全文链接:https://doi.org/10.1016/j.compscitech.2022.109715


  • [来源:中国聚合物网]
  • 了解更多请进入: 王明教授个人网站
相关新闻
  • · Composites, Part B:通过增强阻抗匹配和电磁协同在银微管/钡铁氧体/聚乳酸复合材料中实现吸收型电磁屏蔽性能
  • · Journal of Materials Science & Technology:具有异质界面和电磁协同作用的银钴空心微球微波吸收增强:实现轻质和吸收型微波屏蔽复合材料
  • · Composites, Part A:通过添加少量金属微粒提高多壁碳纳米管/聚二甲基硅氧烷复合材料的电磁屏蔽性能
  • · Journal of Materials Science & Technology:通过构建阳离子-π相互作用改善石墨在生物降解淀粉材料中的分散和剥离:实现电磁屏蔽增强

关于我们  |  联系我们  

网站:中国聚合物网

polymer.cn Copyright ©2017