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The Numerical and Experimental Investigation of the Change of the Thermal Conductivity of Expanded Polystyrene at Different Temperatures and Densities

机译:不同温度和密度膨胀聚苯乙烯导热率变化的数值和实验研究

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The determination of the thermal conductivity of insulation materials depending on which parameters in the application as well as the production is very important. In this direction, the parameters affecting thermal conductivity should be determined to improve the efficiency of the insulation materials. It is also a fact that expanded polystyrene blocks have different thermal conductivities at the same density value depending on the production process. In this study, it was determined, experimentally and numerically, that the thermal conductivity of expanded polystyrene material at different densities is dependent on which parameters and changes in temperature. Expanded polystyrene materials consist of blocks of 30×30?cm with density of 16, 21, and 25?kg/m3 and a thickness of 20?mm. Thermal conductivity measurements were performed in FOX 314 (Laser Comp., USA) operating in accordance with ISO 8301 and EN 12667 standards. The measurements were made for expanded polystyrene blocks at the average temperatures of 10°C, 20°C, 30°C, and 40°C. The numerical study has three stages as the acquisition of electron microscope images (SEM) of expanded polystyrene blocks, modeling of internal structure geometry with CAD program, and realization of solutions with a finite element-based ANSYS program. Findings from experimental and numerical studies and the parameters affecting thermal conductivity were determined. Finally, it is thought that numerical methods can be used to obtain a preliminary idea for EPS material in determining thermal conductivity by comparing the findings of experimental and numerical studies.
机译:根据应用中的参数以及生产非常重要,确定绝缘材料的导热率。在这种方向上,应确定影响导热率的参数以提高绝缘材料的效率。这也是根据生产过程,扩增的聚苯乙烯块具有不同密度值的不同热导率。在该研究中,在实验和数值上确定,在不同密度下的膨胀聚苯乙烯材料的导热率取决于哪个参数和温度变化。膨胀的聚苯乙烯材料由30×30Ωcm的块组成,密度为16,21和25Ωkg / m3,厚度为20Ωmm。在福克斯314(激光Comp,USA)按照ISO 8301和EN 12667标准中进行导热率测量。在10℃,20℃,30℃和40℃的平均温度下对膨胀的聚苯乙烯嵌段进行测量。数值研究具有三个阶段作为膨胀聚苯乙烯块的电子显微镜图像(SEM),内部结构几何结构与CAD程序的建模,以及利用基于有限元的ANSYS程序的解决方案。确定实验和数值研究的结果和影响导热率的参数。最后,认为可以使用数值方法来获得通过比较实验和数值研究的结果来确定导热率的EPS材料的初步思想。

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