YAN Ruobin, MAO Xinjie, PENG Chong, et al. Study on Effect of Meshing Treatment on Electrothermal Temperature Distribution of Carbon Nanotube Films[J]. Aeronautical Manufacturing Technology, 2025, (21).
DOI:
YAN Ruobin, MAO Xinjie, PENG Chong, et al. Study on Effect of Meshing Treatment on Electrothermal Temperature Distribution of Carbon Nanotube Films[J]. Aeronautical Manufacturing Technology, 2025, (21). DOI: 10.16080/j.issn1671-833x.2025.21.114.
Study on Effect of Meshing Treatment on Electrothermal Temperature Distribution of Carbon Nanotube Films
采用仿真模拟与试验验证相结合的方法,探讨了网格化处理对碳纳米管薄膜(CNT–film)电热性能的影响。首先,通过有限元分析,研究不同网格形状、取向方向、网格间距和圆角半径对电热元件温度分布及均匀性的影响;结果表明,CNT–film 电热元件采用正方形网格、电流方向垂直取向方向、网格间距d=5 mm、圆角半径r=1 mm 的参数进行设计时,温度分布均匀性效果最好。在仿真优化的基础上,开展试验以验证仿真结果的可靠性,试验结果与仿真结果一致,表明网格化设计方案可以显著提高CNT–film 电热元件的温度均匀性和电阻值,避免传统CNT–film 电热元件因表面电性能不均匀而导致的温度分布不均、局部温度过高等问题。优化方案不仅扩展了CNT–film 在面状电热领域的潜在应用,还为局部开孔电热元件的设计提供了新思路和方法。
Abstract
The electrothermal properties of meshed carbon nanotube film (CNT–film) were investigated by means of simulation and experimental verification. Firstly
the influence of different mesh shape
orientation
mesh spacing and fillet radius on the temperature distribution and uniformity of electric heating element was studied by finite element analysis. The results demonstrate that the temperature distribution uniformity of CNT–film heating element is the best when the parameters of square grid
vertical current direction
mesh spacing d of 5 mm and fillet radius r of 1 mm were adopted. Then
on the basis of simulation optimization
experiments are carried out to verify the reliability of simulation results. The experimental results are consistent with the simulation results
indicating that the meshing scheme can significantly improve temperature uniformity and resistance value of CNT–film electric heating elements
avoiding the problems of uneven temperature distribution and high local temperature caused by uneven surface electrical properties of traditional CNT–film electric heating elements. The optimization scheme not only expands the potential use of CNT–film in surface heating area
but also provides a new idea and method for designing heating elements with local opened pore.