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Protection of electronic devices on nuclear rescue robot: Passive thermal control

机译:核救援机器人上的电子设备保护:被动热控制

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Thermal control is one of the most crucial problems for electronic devices on nuclear emergency rescue robot due to the harsh operating conditions. Phase change material (PCM) based heat sink and heat insulation layers, serving as a passive thermal control system, were applied for motor driver as a case for electronics protection on nuclear rescue robot. Two types of PCM based thermal control systems for both room temperature and elevated temperature environments were proposed considering the nuclear accident condition. The anti-irradiation property of an organic commercial PCM OP44E was studied. Experiments were conducted to investigate effects of system structure and heat source power on the temperature control. Results showed that the system can greatly prolong the motor driver's safe running time for more than 1 hour without any power consumption. The best working time was almost linearly decreased with the increase of the input power. High temperature test at 100 degrees C indicated that the motor driver could safely operate for more than 98 min. The PCM based support frame increased 54% of the best working time. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于恶劣的工作条件,热控制是核应急救援机器人上电子设备最关键的问题之一。基于相变材料(PCM)的散热器和隔热层,用作被动热控制系统,已应用于电动机驱动器,作为核救援机器人电子保护的外壳。考虑到核事故条件,提出了两种适用于室温和高温环境的基于PCM的热控制系统。研究了有机市售PCM OP44E的抗辐射性能。进行实验以研究系统结构和热源功率对温度控制的影响。结果表明,该系统可以大大延长电机驱动器的安全运行时间1小时以上,而不会消耗任何功率。随着输入功率的增加,最佳工作时间几乎线性减少。 100摄氏度的高温测试表明,电动机驱动器可以安全地运行98分钟以上。基于PCM的支撑架延长了最佳工作时间的54%。 (C)2016 Elsevier Ltd.保留所有权利。

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