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Preparation, Mechanical and Thermal Properties of Cement Board with Expanded Perlite Based Composite Phase Change Material for Improving Buildings Thermal Behavior

机译:膨胀珍珠岩基复合相变材料水泥板的制备,力学和热性能

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Here we demonstrate the mechanical properties, thermal conductivity, and thermal energy storage performance of construction elements made of cement and form-stable PCM-Rubitherm? RT 28 HC (RT28)/expanded perlite (EP) composite phase change materials (PCMs). The composite PCMs were prepared by adsorbing RT28 into the pores of EP, in which the mass fraction of RT28 should be limited to be no more than 40 wt %. The adsorbed RT28 is observed to be uniformly confined into the pores of EP. The phase change temperatures of the RT28/EP composite PCMs are very close to that of the pure RT28. The apparent density and compression strength of the composite cubes increase linearly with the mass fraction of RT28. Compared with the thermal conductivity of the boards composed of cement and EP, the thermal conductivities of the composite boards containing RT28 increase by 15%–35% with the mass fraction increasing of RT28. The cubic test rooms that consist of six boards were built to evaluate the thermal energy storage performance, it is found that the maximum temperature different between the outside surface of the top board with the indoor temperature using the composite boards is 13.3 °C higher than that of the boards containing no RT28. The thermal mass increase of the built environment due to the application of composite boards can contribute to improving the indoor thermal comfort and reducing the energy consumption in the buildings.
机译:在这里,我们演示了由水泥和形状稳定的PCM-Rubitherm ? RT 28 HC(RT28)/膨胀珍珠岩(EP)复合相制成的建筑构件的机械性能,导热系数和储热性能。更换材料(PCM)。通过将RT28吸附到EP的孔中来制备复合PCM,其中RT28的质量分数应限制为不大于40wt%。观察到吸附的RT28被均匀地限制在EP的孔中。 RT28 / EP复合PCM的相变温度非常接近纯RT28。复合立方体的表观密度和抗压强度随RT28的质量分数线性增加。与由水泥和EP组成的板的导热率相比,含RT28的复合板的导热率随RT28的质量分数的增加而增加了15%至35%。建造了由六块板组成的立方测试室,以评估热能存储性能,发现使用复合板时,顶板的外表面与室内温度之间的最高温度差为13.3°C。不包含RT28的板上。由于使用复合板,建筑环境的热质量增加可以有助于改善室内热舒适性并减少建筑物的能耗。

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