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Use of PCM-polymer composite dense sheet including EAFD in constructive systems

机译:包括EAFD在内的PCM聚合物复合致密片材在结构体系中的用途

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In recent years, the overall energy consumption is increasing significantly and the energy consumption in the building sector represents over 30% of the global ones in developed countries. Thermal energy storage (TES) using phase change materials (PCM), which are materials able to store high amounts of energy as latent heat, is suggested as a possible solution to decrease the energy consumption. The authors of this paper developed materials able to encapsulate/stabilize PCM in addition to isolate an industrial residue from the steel recycling process: electrical arc furnace dust (EAFD). This waste is a hazardous dust, and when it is combined with a polymeric matrix produce dense sheet materials suitable for multilayered constructive systems. In this paper the physical, mechanical, thermal and acoustical characterization of two new materials with EAFD and PCM in a polymeric matrix for constructive system is presented. The results are compared with those obtained for one commercial dense sheet material available in the market, Texsound commercialized by TEXSA (Spain). The new dense sheet materials developed in this paper have similar acoustic properties compared to the results obtained for the commercial material and are competitive with it, even better because the new material incorporates PCM which increases the thermal inertia of final constructive system.
机译:近年来,总体能源消耗显着增加,建筑部门的能源消耗占发达国家全球能源消耗的30%以上。建议使用相变材料(PCM)进行热能存储(TES),这是一种能够将大量能量作为潜热存储的材料,可以作为降低能耗的解决方案。本文的作者开发了能够封装/稳定PCM的材料,以及从钢铁回收过程中分离出工业残留物的方法:电弧炉粉尘(EAFD)。该废料是有害粉尘,当与聚合物基体结合使用时,会产生适合多层建筑系统的致密片材。本文介绍了两种新材料的物理,机械,热学和声学特性,其中EAFD和PCM在用于建筑系统的聚合物基体中。将结果与在市场上可买到的一种由TEXSA(西班牙)商业化的Texsound的致密片材获得的结果进行比较。与商用材料相比,本文开发的新型致密片材具有相似的声学特性,并且具有竞争优势,甚至更好,因为新材料采用了PCM,从而增加了最终结构系统的热惯性。

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