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Development of a Variable Emittance Radiator Based on a Perovskite Manganese Oxide

机译:钙钛矿型锰氧化物可变辐射率散热器的研制

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Two types of thermal control materials developed for space use are described. These new materials use a variable emittance radiator called the smart radiation device (SRD). The SRDs are based on La_(0.825)Sr_(0.175)MnO_3 and La_(0.7)Ca_(0.3)MnO_3 and comprise a thin and light ceramic tile. The materials undergo a metal-insulator transition near room temperature, and this allows the infrared emissivity of the device to change from low to high as the temperature is increased from 173 to 375 K. This is beneficial for thermal control applications on spacecraft. For example, bonded only to the external surface of the spacecraft, the SRD controls the heat radiated to deep space without electrical instruments or mechanical parts. Its function is similar to the thermal louver, but the SRD is lighter. This new device reduces the energy consumption of the electrical heater for thermal control and decreases the weight and the cost of the thermal control system. Optical properties, such as the total hemispherical emittance and the solar absorptance, have been measured. Space environmental simulation tests were performed with independent irradiation by protons, electrons, and UV on the ground. Degradation of the materials' optical properties is discussed.
机译:描述了为空间使用而开发的两种类型的热控制材料。这些新材料使用称为智能辐射装置(SRD)的可变发射率辐射器。 SRD基于La_(0.825)Sr_(0.175)MnO_3和La_(0.7)Ca_(0.3)MnO_3,并且包括薄而轻的瓷砖。这些材料在接近室温的温度下会经历金属-绝缘体的转变,随着温度从173 K升高到375 K,设备的红外发射率将从低变到高。这对于航天器的热控制应用是有益的。例如,SRD仅粘结到航天器的外表面,无需电子仪器或机械零件即可控制辐射到深空的热量。它的功能类似于散热百叶窗,但SRD更轻。这种新设备减少了用于热控制的电加热器的能耗,并降低了热控制系统的重量和成本。已经测量了光学性质,例如总半球形发射率和太阳吸收率。在质子,电子和紫外线在地面上独立照射的条件下进行了空间环境模拟测试。讨论了材料光学性能的下降。

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