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Pore Structure of Concrete with Mineral Admixtures and Its Effect on Self-Desiccation Shrinkage

机译:矿物掺合料混凝土的孔结构及其对自干收缩的影响

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High-performance concrete (HPC) is known for the specificity of its pore system compared with that of conventional concrete. Indeed, its capillaries are characterized by very fine pores. Refinement of these pores mainly depends on the type, proportion, and fineness of the pozzolanic materials incorporated. The finest HPC pores, however, induce two opposite phenomena: on the one hand, better mechanical performances, which lead to considerable improvement in durability; and on the other hand, increased self-desiccation shrinkage caused by the high capillary depression in these finer pores.rnThis study highlights both fundamental aspects resulting from the use of mineral admixtures in HPC. Concrete mixtures with two water-binder ratios (w/b) of 0.35 and 0.30, and three types of binders were used in this research. Shrinkage was measured on massive blocks that somewhat simulated a real concrete structure. The pore size distribution was measured at different ages by mercury intrusion porosimetry (MIP).rnThe results obtained show that refinement of the capillary network and its evolution with time are closely related to mineral addition type and fineness. Moreover, refinement of the pores evolves significantly at a very early age depending on the type of binder used. This change in the pore structure of capillaries induces an increase in the magnitude of self-desiccation shrinkage during this lapse of time. Also, the lower the w/b of the mixtures, the higher the effect of refinement of the capillary network on self-desiccation shrinkage development. It was also found that the incorporation of mineral admixtures considerably reduces the average pore radius while it increases the amount of pores smaller than 15 nm (5.9 × 10~(-7)in.). In general, the. smaller the average pore radius is, the higher the shrinkage will be.
机译:与常规混凝土相比,高性能混凝土(HPC)因其孔隙系统的特异性而闻名。实际上,其毛细血管的特征是非常细的毛孔。这些孔的细化主要取决于所结合的火山灰材料的类型,比例和细度。然而,最好的HPC孔会引起两种相反的现象:一方面,更好的机械性能可导致耐用性的显着提高;另一方面,HPC的孔具有更好的机械性能。另一方面,这些细孔中的高毛细管压低导致自干燥收缩增加。本研究着重说明了在HPC中使用矿物混合物导致的两个基本方面。在这项研究中,使用了两种水粘结剂比(w / b)分别为0.35和0.30的混凝土混合物以及三种粘结剂。在块状结构上测量收缩率,该块状结构模拟了真实的混凝土结构。通过压汞法(MIP)测量了不同年龄段的孔径分布。结果表明,毛细管网络的细化及其随时间的演化与矿物的添加类型和细度密切相关。此外,取决于所用粘合剂的类型,孔的细化在很早的年龄就显着发展。毛细血管的孔结构的这种变化导致在这段时间中自干燥收缩的幅度增加。同样,混合物的w / b越低,细化毛细管网络对自干燥收缩发展的影响越大。还发现掺入矿物混合物会大大降低平均孔径,同时会增加小于15 nm(5.9×10〜(-7)in。)的孔数量。一般而言。平均孔半径越小,收缩率越高。

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