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Electrostatic Switched Radiator For Space Based Thermal Control

机译:航天热控制用静电开关散热器

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This paper describes a new thermal control device, termed an electrostatically controlled radiator (ESR) which uses electrostatic hold-down of a high emissivity composite film to control spacecraft skin temperature. The electrostatic hold-down switches the mode of heat transfer from the spacecraft skin from conduction to radiation. The effect is a large change in apparent emissivity. This device can operate effectively with moderate levels of DC voltages (i.e. 200 ― 500V). Application of the voltage results in the high emissivity state while removal gives the low ε state, ft should be noted that the ESR device basically operates as a high quality capacitor (C ~ 400 nF/m~2). Thus, if the control voltage is simply removed (as opposed to shorted) from the ESR film, the high emissivity state has a limited memory. In this paper, we provide experimental results of large effective emissivity changes having been achieved. Individual ESR devices have been fabricated with measured emissivity changes of approximately .74. Additionally, some ESR devices have been fabricated which achieved a maximum measured E of .9; other samples have been produced which achieved a minimum ε of. 1. Thus, with further material research and development and production process controls, it is expected that devices which can achieve a Δε of .8 can be produced.
机译:本文介绍了一种新型的热控制装置,称为静电控制散热器(ESR),该装置使用高发射率复合膜的静电压制来控制航天器的皮肤温度。静电抑制将热量从航天器蒙皮的传递模式从传导转换为辐射。结果是表观发射率发生了很大变化。该设备可以在中等水平的DC电压(即200到500V)下有效运行。施加电压会导致高发射率状态,而去除则会产生低ε状态,应注意的是,ESR器件基本上可以用作高质量电容器(C〜400 nF / m〜2)。因此,如果简单地从ESR膜去除(而不是短路)控制电压,则高发射率状态具有有限的存储。在本文中,我们提供了已实现的大有效发射率变化的实验结果。已制造出单个ESR器件,其测得的发射率变化约为0.74。另外,已经制造出一些ESR装置,其最大测量E值为0.9;产生了其他样品,其达到最小ε。因此,期望通过进一步的材料研究和开发以及生产过程控制,来生产可以实现Δε为0.8的器件。

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