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Relationships between compressive strength of cement-slag mortars under air and water curing regimes

机译:空气和水固化条件下水泥渣砂浆抗压强度的关系

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摘要

In this investigation 12 mortar mixes including three groups were prepared using binder contents 380 and 500 kg/m~3. All the specimens were cured after casting and demoulding in curing regimes, i.e. at room temperature (ac) and in water (wc). The highest strength was obtained for cement-slag mortars 380-wc at later ages as 80 MPa. For all groups of mortars, there could rarely be strength loss at later ages. It was observed that in duration of 3-7 days, wc is the optimum for all groups of mortars with exception of cement mortar 500 and slag mortar 500. In duration of 28-90 days, wc is also the optimum for three groups of mortars with exception of cement mortar 500. It was revealed that an exponential relationship exists between the strengths obtained in air and water curing conditions for each group of mortar, i.e. with and without using ground granulated blast furnace slag. It was proved that higher strengths could be obtained using lower binders' contents for cement and cement-slag mortars provided the specimens were cured in water. This is a new finding having importance from economic and environmental viewpoints; meaning that for producing higher strengths it is not a necessity to use more binders. It was found that increase in level of cement and slag makes the mortars more sensitive to air curing conditions.
机译:在这项研究中,使用粘合剂含量380和500 kg / m〜3制备了包括三组的12种砂浆混合物。在浇铸和脱模之后,所有样品在固化方案中,即在室温(ac)和水中(wc)进行固化。 380-wc的水泥渣砂浆在随后的80 MPa时获得了最高的强度。对于所有类别的迫击炮,在以后的年龄中很少会出现强度损失。据观察,在3-7天的时间里,wc是所有砂浆组的最佳选择,水泥砂浆500和矿渣砂浆500除外。在28-90天的时间里,wc也是三组砂浆的最佳选择除了水泥砂浆500。发现每组砂浆在空气和水固化条件下获得的强度之间存在指数关系,即使用和不使用磨碎的高炉矿渣。事实证明,只要将试样在水中固化,使用较低含量的水泥和水泥矿渣砂浆便可以获得更高的强度。从经济和环境角度来看,这是一个重要的新发现。这意味着为了产生更高的强度,不必使用更多的粘合剂。发现水泥和矿渣含量的增加使砂浆对空气固化条件更加敏感。

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