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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Measurement of Thermal Conductivity of CFRPs and Thermal Conductance of the Cold-to-Warm Joint at Low Temperatures
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Measurement of Thermal Conductivity of CFRPs and Thermal Conductance of the Cold-to-Warm Joint at Low Temperatures

机译:低温下CFRPs导热系数和冷-热接头的导热系数的测量

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摘要

The cold-to-warm joint is often used in the cryogenic system to take advantages of both its thermal and mechanical performances. In this study, we report the experimental measurement of the thermal conductivity and thermal conductance of the cold-to-warm joint for the magnet using from cryogenic temperature to room temperature. The cold-to-warm joint is composed of the carbon fiber reinforced plastics (CFRP) cylinder and metal parts. Two kinds of CFRPs are made of the T300 and T700 carbon fibers and epoxy, respectively. The thermal conductivity of CFRP is measured by a 4 K G-M cryo-cooler based experimental facility and it is measured to be about 0.15–5.0 ${hbox{W}}/({hbox{m}}!cdot!{hbox{K}})$ in about 40 K to room temperature. And the thermal conductance of the cold-to-warm joint is also estimated based on the experimental data. Those results are essential information for designing the suspension structure in cryogenic applications.
机译:冷-热接头通常在低温系统中使用,以充分利用其热性能和机械性能。在这项研究中,我们报告了从低温到室温的磁体冷-热连接的热导率和热导率的实验测量。冷热连接由碳纤维增强塑料(CFRP)气缸和金属零件组成。两种CFRP分别由T300和T700碳纤维和环氧树脂制成。 CFRP的热导率是通过基于4 K GM低温冷却器的实验设备测量的,测量值约为0.15-5.0 $ {hbox {W}} /({hbox {m}}!cdot!{hbox {K }})$在大约40 K到室温下。并根据实验数据估算了冷热连接的热导率。这些结果是设计低温应用中悬浮结构的重要信息。

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