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Isothermal water vapour permeability of concrete with different supplementary cementitious materials

机译:不同补充胶凝材料的混凝土的等温透湿性

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Water vapour permeability (WVP) is a key parameter for the sustainable thermal conditioning of buildings. The study of the WVP in concrete with supplementary cementitious materials (SCMs) allows for the design of structures with improved durability and sustainability. To our knowledge, there is insufficient experimental data in the literature regarding the WVP of concrete with SCMs. WVP tests were made on concrete mixes containing ground granulated blast-furnace slag (GGBFS) and limestone powder (LP) as a partial replacement for ordinary Portland cement, and of concrete mixes containing pozzolanic cement (NP). Results from three moisture gradients show that GGBFS induces the greatest reduction in WVP, followed by the NP. LP shows a diluting effect of the binder, which could be compensated by GGBFS in the ternary blend. From the comparison between the WVP and the capillary sorption rate, the influence of the SCMs on the connectivity of the smallest pores is assessed.
机译:水蒸气渗透率(WVP)是建筑物可持续热调节的关键参数。对带有辅助胶凝材料(SCM)的混凝土中WVP的研究可以设计出具有更高耐久性和可持续性的结构。据我们所知,文献中关于含SCM的混凝土WVP的实验数据不足。 WVP测试是对含有磨碎的高炉矿渣(GGBFS)和石灰石粉(LP)的混凝土混合料(作为普通硅酸盐水泥的部分替代品)以及含有火山灰水泥(NP)的混凝土混合料进行的。来自三个湿度梯度的结果表明,GGBFS引起WVP的最大降低,其次是NP。 LP显示出粘合剂的稀释作用,可以通过三元共混物中的GGBFS来补偿。通过比较WVP和毛细管吸附速率,可以评估SCM对最小孔的连通性的影响。

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