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Experimental and analytical studies on the flexible, low-voltage electrothermal film based on the multi-walled carbon nanotube/polymer nanocomposite

机译:基于多壁碳纳米管/聚合物纳米复合材料的柔性低压电热膜的实验和分析研究

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This paper presents multi-walled carbon nanotube (MWCNT)/poly(m-phenylene isophthalamide) (PMIA) nanocomposite films as electrothermal elements, which offer advantages in flexibility, low energy consumption and rapid temperature growth. The electrical properties, electrothermal behavior and thermal stability of the films were investigated as a function of MWCNT content. The percolation behavior analysis revealed MWCNTs built a continuously conductive network in PMIA matrix at the corresponding percolation threshold of similar to 0.06 wt%. The electrothermal behavior of the MWCNT/PMIA film was investigated by considering temperature response rapidity and electrothermal efficiency under different ambient conditions. For the film with 7.0 wt% MWCNTs under different ambient conditions, the film worked at a high heating rate of 1.0-8.2 degrees C s(-1) and cooling rate of 0.75-7.0 degrees C s(-1) under a low voltage of 3-12 V, due to the low electrical resistivity (4.5 ohm cm) of the film. The prepared MWCNT/PMIA films supported more outstanding heating performance than conventional PI-Kanthal film, including good heating uniformity, higher electrothermal efficiency and heating/cooling rate. Moreover, the improved thermomechanical properties of the nanocomposite were observed by dynamic thermomechanical analysis.
机译:本文介绍了多壁碳纳米管(MWCNT)/聚(M-苯基苯二甲酰氨酸酯)(PMIA)纳米复合膜作为电热元素,可提供灵活性,低能耗和快速增长的优势。作为MWCNT含量的函数,研究了膜的电性能,电热行为和热稳定性。渗透行为分析揭示了MWCNTS在PMIA矩阵中在相应的渗透阈值下建立了连续导电网络,其相应的渗透阈值类似于0.06wt%。通过考虑在不同环境条件下的温度响应快速和电热效率,研究了MWCNT / PMIA膜的电热行为。对于在不同的环境条件下具有7.0wt%MWCNT的薄膜,在低电压下,薄膜以1.0-8.2摄氏度(-1)的高加热速度和0.75-7.0度(-1)的冷却速率工作。 3-12 V,由于薄膜的电阻率低(4.5欧姆Cm)。制备的MWCNT / PMIA薄膜支持比常规PI-Kanthal薄膜更加出色的加热性能,包括良好的加热均匀性,更高的电热效率和加热/冷却速率。此外,通过动态热机械分析观察到纳米复合材料的改进的热机械性能。

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