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Electrical conductivity based characterization of plain and coarse glass powder modified cement pastes

机译:基于电导率的普通和粗玻璃粉改性水泥浆的表征

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This paper describes the use of eleetrical conductivity to characterize plain and coarse glass powder modified cement pastes. It is observed that the glass powder addition facilitates improved hydration of the cement grains. For the proportions investigated in this study, and the particle size of glass powder, this advantage is negated by the reduced amount of hydration products, i.e., the dilution effect. The variation of electrical conductivity and its derivative with time can be related to the various phases in the microstructural development of the paste. It is observed from the time derivative of conductivity plots that the addition of glass powder results only in minor changes in the setting time of the pastes. Higher the glass powder content, higher the normalized conductivity (ratio of conductivity at a certain glass powder content to that of plain paste) at very early times, and then it falls to a value closer to or less than 1.0 at later times. A parallel model is used to represent effective conductivity as a function of the pore solution conductivity, porosity, and pore connectivity factor. The pore solution conductivity increases with increase in glass powder content. The porosity of the pastes reduces with increase in glass powder content at early ages and increases at later ages. A reduced pore connectivity factor is observed for pastes with higher glass powder content at later times. However, this does not imply increased volume of hydration products as is commonly interpreted for normal pastes, but the electrical conduction pathways are made more tortuous by the relatively large volume of un-reacted filler material in the pore structure.
机译:本文介绍了利用电导率来表征普通和粗糙的玻璃粉改性水泥浆。观察到,添加玻璃粉有助于改善水泥颗粒的水合作用。对于本研究中所研究的比例以及玻璃粉末的粒径,由于减少了水合产物的量(即稀释效果)而抵消了这一优势。电导率及其导数随时间的变化可能与浆料的微观结构发展中的各个阶段有关。从电导率曲线的时间导数可以看出,添加玻璃粉只会导致糊剂的凝固时间发生微小变化。玻璃粉含量越高,在很早的时候标准化电导率(在一定的玻璃粉含量下与普通糊剂的电导率之比)就越高,然后在后来的时候下降到接近或小于1.0的值。平行模型用于表示有效电导率与孔隙溶液电导率,孔隙率和孔隙连通性因子的关系。孔溶液电导率随玻璃粉末含量的增加而增加。糊状物的孔隙率在早期随着玻璃粉末含量的增加而降低,而在晚期则随着玻璃粉末含量的增加而增加。后来发现,玻璃粉含量较高的浆料的孔连通性因子降低。但是,这并不意味着增加水合产物的体积,这通常是对普通浆料的解释,但是由于孔结构中相对大量的未反应填充材料,导电路径变得更加曲折。

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