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The investigation of electrothermal response and reliability of flexible graphene micro-heaters

机译:柔性石墨烯微加热器电热反应及可靠性研究

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This study developed a flexible graphene micro-heater that can be used for high efficient temperature control and has outstanding long-term performance using ultrafast laser ablation. The input voltages (V), electrode widths (W), and electrode patterns (2-4 finger) were discussed to determine their effects on electrothermal response and switching performance of the micro-heaters. The experimental results confirmed the outstanding performance of the micro-heaters during on - off operation under varying input voltages. At W = 500 mu m, time to steady state t(ss) were less than 3 s for the input voltages from 10 V to 30 V under varying electrode patterns. The micro-heater exhibited a superior heating rate of 15.7 degrees C/s using ultrafast laser ablation. The experimental results revealed that the increasing rate of heater temperature with respect to input voltage increased as the number of electrode fingers decreased, especially under high input voltages. The thermal cycling and bending experiments revealed excellent temperature stability and durability ( 1 degrees C) of the micro-heater. The present study showed that the flexible graphene micro-heater is a high efficient and a reliable device for heating applications using ultrafast laser ablations.
机译:本研究开发了一种柔性石墨烯微加热器,可用于高效的温度控制,并使用超快激光烧蚀具有出色的长期性能。讨论了输入电压(V),电极宽度(W)和电极图案(2-4个手指)以确定它们对微热器的电热响应和切换性能的影响。实验结果证实了微加热器在变化的输入电压下的开关期间的出色性能。在W =500μm处,在不同电极图案下,对于输入电压为10V至30V的输入电压小于3秒。微加热器使用超快激光烧蚀显示出15.7摄氏度的优越加热速率。实验结果表明,随着电极指的数量减小,特别是在高输入电压下,加热器温度相对于输入电压的增加速度增加。热循环和弯曲实验揭示了微加热器的优异温度稳定性和耐久性(<1℃)。本研究表明,柔性石墨烯微加热器是一种高效且可靠的装置,用于使用超快激光消融加热应用。

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