材料科学
镍铬合金
焦耳加热
碳纳米管
复合材料
电气化
热的
加热元件
工作(物理)
织物
电加热
功率(物理)
电弧
热导率
焦耳(编程语言)
电极
纤维
电力
电阻率和电导率
冶金
纳米技术
机械工程
焦耳效应
感应加热
聚合物
液态金属
转换器
光电子学
作者
M. V. Manoj Kumar,Anoop Rajappan,D. A. Bell,Michelle Durán‐Chaves,Eldar M. Khabushev,Hung‐Yu Lin,Zhen Liu,Yingru Song,Vanessa Sánchez,Matteo Pasquali,Daniel John Preston,Geoff Wehmeyer
出处
期刊:Small
[Wiley]
日期:2026-02-12
卷期号:22 (20): e13355-e13355
标识
DOI:10.1002/smll.202513355
摘要
Electrifying industrial heating to reduce Scope 1 emissions will require advanced Joule heating materials and high-power loading devices that enable effective immersion heating of flowing gases. This work shows that solution-spun carbon nanotube fibers (CNTFs) represent promising alternatives to legacy heating materials such as metal alloys for these electrification applications. Annealed CNTFs have similar electrical resistivity to commonly used nichrome alloys while also offering higher specific strength, higher thermal conductivity, higher operating temperatures in non-oxidizing gases, and the ability to be processed with established textile manufacturing techniques. Joule heating experiments are supported by thermal modeling to quantify the power loading of substrate-free devices made entirely of CNTF monofilaments or CNTF fabrics. Single-filament heating experiments in quiescent fluids show that CNTF wires can achieve specific power loadings that are 32x (inert gas) or 3.5x (air) larger than those of nichrome wires with similar diameters, and experiments on self-heated CNTF textiles show 2.4x specific power enhancement in flowing air as compared to nichrome meshes. Thus, this work shows that annealed CNTF wires, arrays, and textiles are a promising material platform to assist in the electrification of industrial gas heating applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI