粉末绝缘材料在180 k以下的导热系数

M. Barrios, Yeon Suk Choi, S. V. Sciver
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引用次数: 8

摘要

我们测量了气凝胶珠和玻璃微球在平均温度从30k到180k范围内的导热系数。该测量装置由悬挂在真空绝缘低温恒温器内的两个封闭同心圆柱体组成。被测试的绝缘材料占据圆柱体之间的环形空间。单级吉福德-麦克马洪制冷机,热锚定在外圆筒,冷却设备到所需的温度范围。安装在内筒上的加热器通过两个筒之间的绝缘材料产生均匀的热流。在每次测量期间,保持绝缘两端大约10k的温差。傅里叶导热定律用于将两个圆柱体之间的温差和施加的加热功率与粉末绝热材料的整体有效导热系数联系起来。在30k和80k之间收集气凝胶珠的数据,在30k和180k之间收集玻璃泡的数据。结果比较…
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THERMAL CONDUCTIVITY OF POWDER INSULATIONS BELOW 180 K
We have measured the thermal conductivity of aerogel beads and glass microspheres at average temperatures ranging from 30 K to 180 K. The measuring device consists of two closed, concentric cylinders suspended inside of a vacuum insulated cryostat. The insulation being tested occupies the annular space between the cylinders. A single stage Gifford-McMahon cryocooler, thermally anchored to the outer cylinder, cools the apparatus to a desired temperature range. A heater mounted on the inner cylinder generates uniform heat flux through the insulating material between the two cylinders. During each measurement, a temperature difference of roughly 10 K across the insulation is maintained. Fourier's law of heat conduction is used to relate the temperature difference between the two cylinders and the applied heating power to a bulk effective thermal conductivity of the powder insulation. Data were collected for aerogel beads between 30 K and 80 K and for glass bubbles between 30 K and 180 K. Results are compared...
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