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PREPARATION and PERFORMANCE of COMPOSITE BUILDING MATERIALS with PHASE CHANGE MATERIAL for THERMAL STORAGE

机译:复合建筑材料的热储存综合建筑材料的制备与性能

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The polyethylene glycol (PEG-1000) was selected as phase change material (PCM) and the expanded perlite (EP), the granular activated carbon (GAC) , the powdered activated carbon (PAC) and the expanded graphite (EG) were selected as porous adsorption materials. The composite phase change material (CPCM) was prepared by the physical adsorption method. The composite phase change materials compound with the polyethylene glycol and the expanded graphite were picked by comparing and analyzing the adsorption capacity of such four types of porous materials. And then the composite building material for thermal storage mixed with the CPCM and the cement, water-reducer, early strength agent was prepared in the pressure condition of-0.05Mpa and the constant temperature condition of 70 °C. Its thermal physical properties, the structural stability and the compression resistance capability of different quality proportion specimens were experimental researched. The results show that such composite building materials with CPCM appears light density, high thermal conductivity, large heat storage capacity and good stability, and its compression resistance capability can satisfy the requirement of ordinary mortar building material.
机译:聚乙二醇(PEG-1000)被选作相变材料(PCM)和膨胀珍珠岩(EP),该颗粒状活性炭(GAC),粉末状活性炭(PAC)和膨胀石墨(EG)被选定为多孔吸附材料。复合相变材料(CPCM)通过物理吸附的方法制备。与聚乙二醇和膨胀石墨的复合相变材料化合物通过比较和分析这样的四种类型的多孔材料中的吸附能力拾取。然后将复合建筑材料用于与所述CPCM和水泥,减水剂,早强剂中的-0.05MPa的压力条件和70℃的恒温条件制备混合的储热。其热物理性能,结构稳定性和不同质量比例试件的耐压缩性的能力进行了试验研究。结果表明,这样的复合建材用CPCM出现光密度,高的热导率,大的热容量和良好的稳定性,和它的耐压缩性的能力能够满足普通砂浆建筑材料的要求。

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