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Analysis of walls of functional gypsum board added with porous material and phase change material to improve hygrothermal performance

机译:分析添加多孔材料和相变材料以改善湿热性能的功能石膏板的壁

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摘要

Gypsum board is widely used as a finishing material, and it is mixed with functional materials to improve the comfort level of indoor air, provide thermal insulation, and satisfy moisture properties. In addition, Phase change material (PCM) is also used as a functional material to reduce energy consumption. Recently, there have been many studies on improving moisture problems, such as condensation and mold growth. Therefore, the hygrothermal behavior of building materials must be carefully considered to reduce the risk of moisture problems. The objective of this study was to improve the thermal and moisture performance of gypsum board, and achieve energy savings by adding porous material and PCM. The characteristics of functional gypsum board (FGB) with expanded vermiculite (EV), expanded perlite (EP), nano carbon material (C300), and n-octadecane (PCM) were analyzed by Fourier transform infrared (FTIR) spectroscopy for structural stability. The thermal conductivities of the various FGBs were analyzed by TCi thermal conductivity analyzer, and their hygroscopic properties were analyzed based on ISO 12,571 and 12,572. In addition, the hygrothermal performance of walls applied with FGB was evaluated using Wame and Feuchte instationar (WUFI) simulation; the wall composition was concrete wall. As a result, the thermal conductivities of FGB were decreased by 15%, compared with the conventional gypsum board. In the case of moisture properties, the water vapor resistance and water content of FGB were increased, compared with the conventional gypsum board (SR). However, the simulation results showed that there were no moisture problems, such as condensation, mold growth, or structural damage. (C) 2018 Elsevier B.V. All rights reserved.
机译:石膏板被广泛用作装饰材料,并且与功能性材料混合以提高室内空气的舒适度,提供隔热效果并满足湿气特性。此外,相变材料(PCM)也用作功能材料以减少能耗。最近,已经进行了许多有关改善水分问题的研究,例如凝结和霉菌生长。因此,必须仔细考虑建筑材料的湿热行为,以减少发生水分问题的风险。这项研究的目的是通过添加多孔材料和PCM来改善石膏板的散热和防潮性能,并实现节能。通过傅里叶变换红外(FTIR)光谱分析了具有膨胀ver石(EV),膨胀珍珠岩(EP),纳米碳材料(C300)和正十八烷(PCM)的功能石膏板(FGB)的结构稳定性。使用TCi导热系数分析仪分析各种FGB的导热系数,并根据ISO 12,571和12,572分析其吸湿性能。另外,使用Wame和Feuchte instationar(WUFI)模拟评估了FGB墙体的湿热性能。墙的组成是混凝土墙。结果,与传统的石膏板相比,FGB的热导率降低了15%。与传统的石膏板(SR)相比,在水分特性方面,FGB的耐水蒸气性和含水量增加。但是,模拟结果表明没有水分问题,例如凝结,霉菌生长或结构损坏。 (C)2018 Elsevier B.V.保留所有权利。

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