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High-temperature alloy/honeycomb ceramic composite materials for solar thermal storage applications: Preparation and stability evaluation

机译:高温合金/蜂窝陶瓷复合材料用于太阳能热存储应用:制备和稳定性评估

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摘要

SiCw/Al2O3 honeycomb ceramics were engaged as sensible shell materials for encapsulating Al-Si alloys (latent heat materials) in the honeycomb holes to obtain alloy/ceramic composite materials with a high thermal storage capacity for high-temperature solar thermal storage applications. The stability evaluation between the sensible honeycomb ceramics and the latent alloys had been conducted and the failure mechanism for the latent alloys was investigated. Results indicated that the addition of the latent alloys could improve the thermal storage capacity of the sensible honeycomb ceramics significantly by >114% and the thermal storage densities of honeycombs containing Al-12Si and Al-20Si alloys were 1141.3 kJ/kg and 1106 kJ/kg (400-900 degrees C), respectively. The composite materials exhibited excellent physical and chemical stability. No cracks formed in the honeycomb ceramics and no leakage of alloys was discovered after the composite materials were exposed to 100 thermal cycles in a high-temperature testing environment. The oxidation of Al at > 600 degrees C would lower the latent heat of alloys and the thermal storage densities decreased to 1039.9 kJ/kg and 1013.2 kJ/kg after enduring 100 thermal cycles. This study not only provides a sensible-latent system of thermal storage materials with excellent stability but also gives an insight into the protection of metal containers against the corrosion from Al-based alloys.
机译:SiCW / Al2O3蜂窝陶瓷陶瓷被用作蜂窝状孔中的合理壳材料(潜热材料),以获得具有高热存储容量的合金/陶瓷复合材料,用于高温太阳能热存储应用。已经进行了合理的蜂窝陶瓷和潜在合金之间的稳定性评价,并研究了潜在合金的失效机理。结果表明,潜在合金的添加可以显着提高合理的蜂窝陶瓷的热储存能力> 114%,含有Al-12Si和Al-20si合金的蜂窝状的热储存密度为1141.3kJ / kg和1106 kJ /千克(400-900摄氏度)。复合材料表现出优异的物理和化学稳定性。在高温测试环境中将复合材料暴露于100个热循环之后,发现在蜂窝陶瓷中没有形成在蜂窝陶瓷中并且没有泄漏的裂缝。 AT> 600℃的氧化将降低合金的潜热,并且在持续100个热循环后,热储存密度降低至1039.9kJ / kg和1013.2kJ / kg。这项研究不仅提供了具有优异稳定性的热储存材料的明智潜在的系统,而且还能欣赏到基于Al基合金的腐蚀的金属容器的保护。

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