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Composite Materials for Thermal Energy Storage: Enhancing Performance through Microstructures

机译:用于热能存储的复合材料:通过微结构提高性能

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摘要

Chemical incompatibility and low thermal conductivity issues of molten-salt-based thermal energy storage materials can be addressed by using microstructured composites. Using a eutectic mixture of lithium and sodium carbonates as molten salt, magnesium oxide as supporting material, and graphite as thermal conductivity enhancer, the microstructural development, chemical compatibility, thermal stability, thermal conductivity, and thermal energy storage performance of composite materials are investigated. The ceramic supporting material is essential for preventing salt leakage and hence provides a solution to the chemical incompatibility issue. The use of graphite gives a significant enhancement on the thermal conductivity of the composite. Analyses suggest that the experimentally observed microstructural development of the composite is associated with the wettability of the salt on the ceramic substrate and that on the thermal conduction enhancer.
机译:熔融盐基储热材料的化学不相容性和低导热系数问题可以通过使用微结构复合材料来解决。以锂和碳酸钠的共晶混合物为熔盐,氧化镁为支撑材料,石墨为导热增强剂,研究了复合材料的微观结构发展,化学相容性,热稳定性,导热性和储热性能。陶瓷支撑材料对于防止盐泄漏是必不可少的,因此可以解决化学不相容性问题。石墨的使用大大提高了复合材料的导热性。分析表明,实验观察到的复合材料的微结构发展与盐在陶瓷基体和导热增强剂上的润湿性有关。

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