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Aggregate and slag cement effects on autogenous shrinkage in cementitious materials

机译:骨料和矿渣水泥对胶凝材料自生收缩的影响

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This study investigates the susceptibility of cementitious materials to internal moisture condition by the autogenous deformation measurement in the 0.35 water-binder (wpb) ratio systems (paste, mortar and concrete). Autogenous shrinkage is obtained by separating the thermal effects from the measured total deformation using the maturity concept and the coefficient of thermal deformation (CTD). Three factors affecting the autogenous shrinkage are presented, that is the aggregate content, the partial replacement of portland cement with slag cement and of normal weight fine aggregate with lightweight aggregate (LWA). Autogenous shrinkage is clearly reduced by an increasing aggregate content and this effect is predicted by an improved Pickett's model using a time-dependent aggregate restraining factor. A binary cementitious system of portland cement and slag cement increases the autogenous shrinkage in the long term. Contribution of slag cement can be characterized by the difference in autogenous shrinkage between the binary system and the control system scaled down by the replacement ratio. The negative effect of slag cement can be neutralized by the incorporation of LWA as a partial sand replacement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究通过在0.35水灰比(wpb)比率系统(浆体,砂浆和混凝土)中进行自发变形测量,研究了胶结材料对内部水分状况的敏感性。通过使用成熟度概念和热变形系数(CTD)将热效应与测得的总变形分开来获得自发收缩。提出了影响自发收缩的三个因素,即骨料含量,用矿渣水泥部分代替硅酸盐水泥和用轻质骨料(LWA)代替正常重量的细骨料。骨料含量的增加会明显减少自发收缩,而改进的Pickett模型使用与时间有关的骨料抑制因子可以预测这种影响。硅酸盐水泥和矿渣水泥的二元胶结体系从长远来看会增加自发收缩。矿渣水泥的贡献可以通过二元系统和控制系统之间的自发收缩率差异来表征,该差异随置换率而缩小。通过掺入LWA作为部分砂替代剂可以消除矿渣水泥的负面影响。 (C)2016 Elsevier Ltd.保留所有权利。

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