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Thermodynamics of aerogel-treated nonwoven fabrics at subzero temperatures

机译:零以下温度下经气凝胶处理的非织造布的热力学

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Nonwoven fabrics and aerogel have complementary properties required for good thermal insulation. In this work, the polyester/polyethylene nonwoven thermal wraps treated with amorphous silica aerogel are studied and characterized with regard to thermodynamical properties at subzero temperatures. The characterization of physical structure was done by scanning electron microscope. C-Therm TCi thermal conductivity analyzer was used to measure thermal properties like conductivity, resistance, and effusivity at subzero temperatures. Heat transfer caused by convection through the thermal wraps was measured by particle image velocimetry technique, which allows obtaining information about the current distribution of velocities in two-dimensional array in a flowing fluid. Vector and scalar maps of the fluid flow were caused by thermal convection. The samples were studied for different temperature gradients. On scientific evaluation of results, thermal conductivity and thermal effusivity were found to be differing with respect to different temperatures and fabric density. Thermal resistance showed an increase as the fabric thickness increases. It was observed that fabric density and the aerogel present in the structures have a significant effect on thermal properties of aerogel-treated nonwoven fabrics. The findings in this study are significant and can be used for further research in aerogel-treated nonwoven fabrics.
机译:非织造织物和气凝胶具有良好隔热所需的互补性能。在这项工作中,研究了用无定形二氧化硅气凝胶处理过的聚酯/聚乙烯无纺布保鲜膜,并就零下温度下的热力学性质进行了表征。通过扫描电子显微镜对物理结构进行表征。 C-Therm TCi热导率分析仪用于测量零以下温度下的热性能,如电导率,电阻和散热率。通过颗粒包裹测速技术测量了通过热套对流引起的热传递,该技术可以获取有关流动流体中二维阵列中速度的当前分布的信息。流体流动的矢量和标量图是由热对流引起的。研究了样品的不同温度梯度。在对结果进行科学评估时,发现导热率和热发射率在不同的温度和织物密度方面有所不同。耐热性随织物厚度的增加而增加。观察到织物密度和结构中存在的气凝胶对经气凝胶处理的非织造织物的热性能具有显着影响。这项研究中的发现是重要的,可用于经气凝胶处理的非织造布的进一步研究。

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