首页> 外文会议>ACS Symposium Series 888; American Chemical Society(ACS) National Meeting; 2002; Orlando,FL(US) >Far-IR-through-Visible Electrochromics Based on Conducting Polymers for Spacecraft Thermal Control and Military Uses: Application in NASA's ST5 Microsateliite Mission and in Military Camouflage
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Far-IR-through-Visible Electrochromics Based on Conducting Polymers for Spacecraft Thermal Control and Military Uses: Application in NASA's ST5 Microsateliite Mission and in Military Camouflage

机译:基于导电聚合物的远红外可见电致变色材料,用于航天器热控制和军事用途:在NASA的ST5微卫星任务和军事伪装中的应用

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摘要

The largest known, dynamic infrared signature variation in any material, to our knowledge - > 50% Reflectance variation in the 2 to 25 μm region and an emittance variation > .0.5 — is reported for Conducting Polymer-based electrochromic flat panels which are to be flown on NASA's ST5 microsatellite mission. The very thin (< 0.5 mm), flexible, lightweight, variable area (1 cm~2 to 0.5 m~2), entirely solid state flat panels show durability in a space environment, switching times < 5 s, and concomitant Visible-region electrochromism. Applications in military camouflage, e.g. against IR-homing missiles, are also briefly described.
机译:据我们所知,在任何材料中,最大的已知动态红外特征变化-在2至25μm的区域内反射率> 50%,发射率变化> .0.5-据报道,导电聚合物基电致变色平板将成为执行NASA的ST5微卫星任务。全固态平板非常薄(<0.5 mm),灵活,轻便,可变面积(1 cm〜2至0.5 m〜2),在空间环境下显示出耐用性,切换时间<5 s,并具有可见区域电致变色。在军事伪装中的应用,例如还简要介绍了对付红外归巢导弹。

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