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用于可持续高效被动热管理的纳米增强石墨/相变材料/石墨烯复合材料

Nano-Enhanced Graphite/Phase Change Material/Graphene Composite for Sustainable and Efficient Passive Thermal Management.

作者信息

Wang Ji-Xiang, Mao Yufeng, Miljkovic Nenad

机构信息

Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu, 610209, P. R. China.

Hebei Key Laboratory of Man-machine Environmental Thermal Control Technology and Equipment, Hebei Vocational University of Technology and Engineering, Hebei, 054000, P. R. China.

出版信息

Adv Sci (Weinh). 2024 Oct;11(38):e2402190. doi: 10.1002/advs.202402190. Epub 2024 Aug 9.

Abstract

Passive battery thermal management systems (BTMSs) are critical for mitigation of battery thermal runaway (TR). Phase change materials (PCMs) have shown promise for mitigating transient thermal challenges. Fluid leakage and low effective thermal conductivity limit PCM adoption. Furthermore, the thermal capacitance of PCMs diminishes as their latent load is exhausted, creating an unsustainable cooling effect that is transitory. Here, an expanded graphite/PCM/graphene composite that solves these challenges is proposed. The expanded graphite/PCM phase change composite eliminates leakage and increases effective thermal conductivity while the graphene coating enables radiative cooling for PCM regeneration. The composite demonstrates excellent thermal performance in a real BTMS and shows a 26% decrease in temperature when compared to conventional BTMS materials. The composite exhibits thermal control performance comparable with active cooling, resulting in reduced cost and increased simplicity. In addition to BTMSs, this material is anticipated to have application in a plethora of engineered systems requiring stringent thermal management.

摘要

被动式电池热管理系统(BTMS)对于缓解电池热失控(TR)至关重要。相变材料(PCM)已显示出缓解瞬态热挑战的潜力。流体泄漏和低有效热导率限制了PCM的应用。此外,随着PCM潜热负荷耗尽,其热容量会减小,从而产生不可持续的短暂冷却效果。在此,提出了一种解决这些挑战的膨胀石墨/PCM/石墨烯复合材料。膨胀石墨/PCM相变复合材料消除了泄漏并提高了有效热导率,而石墨烯涂层则实现了用于PCM再生的辐射冷却。该复合材料在实际的BTMS中表现出优异的热性能,与传统BTMS材料相比,温度降低了26%。该复合材料展现出与主动冷却相当的热控性能,从而降低了成本并提高了简易性。除了BTMS,预计这种材料还将应用于众多需要严格热管理的工程系统中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c590/11481206/1ac42718302d/ADVS-11-2402190-g003.jpg

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