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Applications of graphite-enabled phase change material composites to improve thermal performance of cementitious materials

机译:使能石墨相变材料复合材料的应用提高水泥材料的热性能

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Enhancing the thermal efficiency to decrease the energy consumption of structures has been the topic of much research. In this study, a graphite-enabled microencapsulated phase change material (GE-MEPCM) was used in the production of a novel thermal energy storage engineered cementitious composite feathering high heat storage capacity and enhanced thermal conductivity. The surface morphology and particle size of the microencapsulated phase change material (MEPCM) were investigated by scanning electron microscopy (SEM). Thermal properties of MEPCM was determined using differential scanning calorimetry (DSC). In addition, thermal and mechanical properties of the cementitious mortar with different admixtures were explored and compared with those of a cementitious composite. It was shown that the latent heat of MEPCM was 162 J/g, offering much better thermal energy storage capacity to the cementitious composite. However, MEPCM was found to decrease the thermal conductivity of the composite, which can be effectively solved by adding natural graphite (NG). Moreover, the incorporation of MEPCM has a certain decrease in the compressive strength, mainly due to the weak interfaces between MEPCM and cement matrix.
机译:增强了降低结构的能量消耗的热效率一直是有多大研究的主题。在该研究中,使用了一种石墨的微胶囊化相变材料(Ge-Mepcm),用于生产新的热能储存工程化水泥复合复合羽化羽化的高蓄热容量和增强的导热率。通过扫描电子显微镜(SEM)研究了微胶囊化相变材料(Mepcm)的表面形态和粒径。使用差示扫描量热法(DSC)测定MEPCM的热性能。此外,与水泥复合材料的水泥砂浆的热和机械性能进行探索,与水泥复合材料相比。结果表明,Mepcm的潜热为162 j / g,为水泥复合材料提供了更好的热能储存能力。然而,发现MEPCM降低复合材料的导热率,这可以通过添加天然石墨(NG)来有效地解决。此外,Mepcm的掺入具有一定的抗压强度降低,主要是由于Mepcm和水泥基质之间的弱界面。

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