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Thermal and Electrical Properties of Water-repellent Sands

机译:防水砂的热和电性能

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The behavior of water-repellent soils has been less concerned in spite of the importance of engineering significance compared to the other characteristics of soils. In general, the surface property of soils in natural state is recognized as easy to wet and this concept has been applied to unsaturated soil mechanics. However, there are also water-repellent soils (hydrophobic) generated naturally or produced artificially. The thermal and electrical conductivity are typical indices to assess physical behavior of materials associated with surface wettability. This research presents thermal and electrical properties of wettable and water-repellent sands in unsaturated condition. The wettable sands are in its natural state and the water-repellent sands are chemically treated using organic silane. The microscopic observation using the scanning electron microscopic and the atomic force microscopic images confirms the existence of homogeneously grafted organic materials on the silicate mineral surface. Prepared materials are used in the thermal and electrical experimentations with varying degree of saturation. The transient plane source is used for the measurement of the thermal conductivity. The two-electrode system is selected in the electrical conductivity measurement. The surface wettability that affects the spatial distribution of water in pore space causes the noticeable difference of thermal and electrical properties in two materials.
机译:尽管具有工程重要性,但与土壤的其他特征相比,憎水土壤的行为已很少受到关注。通常,自然状态下的土壤表面特性被认为易于润湿,并且该概念已应用于非饱和土壤力学中。但是,也有天然产生或人工产生的疏水性土壤(疏水性)。导热率和电导率是评估与表面润湿性相关的材料物理行为的典型指标。这项研究提出了在不饱和条件下可湿和防水砂的热和电性能。可湿性沙粒处于自然状态,而疏水性沙粒则使用有机硅烷进行了化学处理。使用扫描电子显微镜和原子力显微镜图像的显微镜观察证实了在硅酸盐矿物表面上存在均匀接枝的有机材料。制备的材料以不同的饱和度用于热和电实验中。瞬态平面源用于热导率的测量。在电导率测量中选择两电极系统。影响孔隙空间中水的空间分布的表面润湿性会导致两种材料的热和电性能出现明显差异。

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