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空间高功率激光二极管泵浦源阵列的相变热控系统
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作者 上官爱红 张昊苏 +5 位作者 曹钰 谢友金 张海洋 姜泳帆 王熹 苏盛明 《光学精密工程》 EI CAS CSCD 北大核心 2024年第19期2877-2888,共12页
为了实现空间高功率激光二极管泵浦源阵列的快速散热,建立了空间高功率激光二极管泵浦源阵列相变热控系统,对热控系统的热界面材料(TIM)、紫铜热沉、相变材料、相变增强材料、主动加热回路和太空辐射板进行了研究与设计。首先,介绍了激... 为了实现空间高功率激光二极管泵浦源阵列的快速散热,建立了空间高功率激光二极管泵浦源阵列相变热控系统,对热控系统的热界面材料(TIM)、紫铜热沉、相变材料、相变增强材料、主动加热回路和太空辐射板进行了研究与设计。首先,介绍了激光二极管泵浦源阵列的热特性与热控指标,从而提出热控设计思路,详细设计了热控系统,并在有无泡沫铜填空的条件下制定了两种热控方案。然后,用NX软件分析了两种不同的方案。分析结果显示:不填充泡沫铜方案的整个相变过程在800 s完成,LD上的温度最高达到59.98℃,相变材料上表面温度最高达到47.12℃;填充泡沫铜方案在200 s内完成相变过程,LD最高温度为38.35℃,并且LD在360 s后和相变温度点温度一致。填充泡沫铜方案可以满足10~40℃的温度指标要求。最后,根据填充泡沫铜方案设计加工了激光二极管泵浦源阵列热控系统,通过实验验证,该系统可以满足空间高功率激光二极管泵浦源阵列快速散热要求。 展开更多
关键词 空间高功率激光器 激光二极管 泵浦源阵列 相变热控系统
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Research Progress on Thermal Management of Lithium-Ion Batteries
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作者 Hong-Da Li Qiu-Wan Shen +3 位作者 Zhao-Yang Zhang Xin-Yue Zhao Yuan Wei Shi-An Li 《电化学(中英文)》 2025年第7期1-17,共17页
Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their perfor... Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their performance,safety and service life through thermal management technology.In this paper,the causes of thermal runaway of lithium batteries are reviewed firstly,and three commonly used thermal management technologies,namely,air cooling,liquid cooling and phase change material cooling,are compared according to relevant literature in recent years.Air cooling technology has been widely studied because of its simple structure and low cost,but its temperature control effect is poor.Liquid cooling technology takes away heat through the circulation of liquid medium,which has a good cooling effect,but the system is relatively complex.Phase change material(PCM)cooling technology uses the high latent heat of PCM to absorb and re-lease heat,which can effectively reduce the peak temperature of a battery and improve the temperature uniformity,but the low thermal conductivity and liquid leakage are its main problems.To sum up,lithium-ion battery thermal management technology is moving towards a more efficient,safer and cost-effective direction.Coupled cooling systems,such as those combining liquid cooling and phase change material cooling,show great potential.Future research will continue to explore new materials and technologies to meet the growing demands of society and the market for lithium-ion battery perfor-mance and safety. 展开更多
关键词 Lithium-ion battery Thermal runaway Thermal management system Phase change material Air cooling Liquid cooling
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