设定值
计算机科学
鱿鱼
热流密度
焊剂(冶金)
功勋
透射率
温度调节
软件部署
材料科学
机械工程
光电子学
传热
物理
生态学
工程类
机械
生物
操作系统
人工智能
冶金
作者
Erica M. Leung,Melvin Colorado Escobar,George Stiubianu,Steven R. Jim,Alexandra L. Vyatskikh,Zhijing Feng,Nicholas Garner,Priyam Patel,Kyle L. Naughton,Maurizio Follador,Emil Karshalev,Morgana M. Trexler,Alon A. Gorodetsky
标识
DOI:10.1038/s41467-019-09589-w
摘要
Effective thermal management is critical for the operation of many modern technologies, such as electronic circuits, smart clothing, and building environment control systems. By leveraging the static infrared-reflecting design of the space blanket and drawing inspiration from the dynamic color-changing ability of squid skin, we have developed a composite material with tunable thermoregulatory properties. Our material demonstrates an on/off switching ratio of ~25 for the transmittance, regulates a heat flux of ~36 W/m2 with an estimated mechanical power input of ~3 W/m2, and features a dynamic environmental setpoint temperature window of ~8 °C. Moreover, the composite can manage one fourth of the metabolic heat flux expected for a sedentary individual and can also modulate localized changes in a wearer's body temperature by nearly 10-fold. Due to such functionality and associated figures of merit, our material may substantially reduce building energy consumption upon widespread deployment and adoption.
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