Powała Krzysztof, Obraniak Andrzej, Heim Dariusz, Mrowiec Andrzej
Faculty of Process and Environmental Engineering, Lodz University of Technology, 90-924 Lodz, Poland.
Polytechnic Department, Akademia Kaliska, 62-800 Kalisz, Poland.
Materials (Basel). 2022 May 25;15(11):3783. doi: 10.3390/ma15113783.
This article shows research confirming the thesis on the use of a new material in the form of gypsum, paraffin, and polymer. The article presents an innovative method of preparing plaster with PCM and polymer. Using a special wheel, it was possible to produce a granulate consisting of a mixture of gypsum and paraffin and then spray it with various preparations in order to select the best substance for encapsulation. The article covers strength tests of the obtained granulate depending on the encapsulated material, as well as screening and separation tests depending on the diameter of the granulate. Then, samples consisting of each type of granulate were prepared and poured with gypsum. Studies of the heat conductivity coefficient, the volumetric heat capacity, and thermal diffusivity were carried out. After obtaining the test results, the development of temperature changes was examined for two gypsum boards, one made of raw gypsum and one containing granules, which achieved the best results. The test was carried out using special lamps that were supposed to emit a total of 1000 W of power. The temperature in front of and behind the plates was examined and appropriate conclusions were drawn.
本文展示了一项研究,证实了关于使用石膏、石蜡和聚合物形式的新材料的论点。文章介绍了一种用相变材料(PCM)和聚合物制备石膏的创新方法。使用一个特殊的轮子,可以生产出由石膏和石蜡混合物组成的颗粒,然后用各种制剂对其进行喷雾,以选择最佳的封装物质。文章涵盖了根据封装材料对所得颗粒进行的强度测试,以及根据颗粒直径进行的筛选和分离测试。然后,制备了由每种颗粒类型组成的样品,并用石膏浇注。进行了热导率系数、体积热容和热扩散率的研究。在获得测试结果后,对两块石膏板的温度变化发展情况进行了检查,一块由生石膏制成,一块含有颗粒,后者取得了最佳结果。测试使用了特殊的灯,这些灯预计总共发射1000瓦的功率。检查了板前后的温度,并得出了适当的结论。