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The influence of type of cement on the degradation of microstructure and transport properties of cement mortars exposed to frost induced damage

机译:水泥类型对霜砂浆砂浆微观结构和运输性能降解的影响

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The purpose of the study is to understand how the cyclic water freezing (0, 25, 50, 75, 100 and 150 freeze-thaw cycles) impacts microstructure and transport properties of cement-based materials. Tests were conducted on cement mortars with different water/cement ratios (w/c=0.45 and 0.40) and on two types of cement (CEM I and CEM III) without air-entraining admixtures. The changes of pore size distribution and open porosity were investigated by means of mercury intrusion porosimetry. Additionally, the relationship between intrinsic permeability and the water absorption coefficient of cement mortar samples was analysed. The water absorption coefficient and gas permeability were determined using capillary absorption test and the modified RILEMCembureau method. The evolution of transport coefficients with growing number of freeze-thaw cycles were determined on the same sample. It was also established that change of pore structure (a decrease of small pore volume 100nm) induces an increase of water transport parameters such as permeability and water absorption coefficient. The higher gas permeability corresponds to the higher internal damage. In particular, it is associated with the change of cement mortar microstructure, which indicates damage of narrow channels in the pore structure of cement mortars.
机译:该研究的目的是了解循环水冻结(0,25,50,75,100和150冻融循环)如何影响水泥基材料的微观结构和运输性能。在不同的水/水泥比(W / C = 0.45和0.40)和两种类型的水泥(CEM I和CEM III)上进行试验,没有空气夹带的混合物。通过汞侵入孔隙测定法研究了孔径分布和开放孔隙的变化。另外,分析了固有渗透性与水泥砂浆样品的吸水系数之间的关系。使用毛细管吸收试验和改性的瑞默博方法测定吸水系数和透气性。在相同的样品上测定具有生长冻融循环次数的运输系数的演变。还建立了孔隙结构的变化(小孔体积100nm的降低)诱导水运输参数的增加,例如渗透率和吸水系数。较高的透气性对应于较高的内部损伤。特别地,它与水泥砂浆微观结构的变化有关,这表明在水泥砂浆的孔结构中造成窄通道的损坏。

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