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Pumping effect to accelerate liquid uptake in concrete and its implications on salt frost durability

机译:促进混凝土中液体吸收的泵送作用及其对盐冻耐久性的影响

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Pumping effect is studied by means of bulk moisture uptake in low water-binder (w/b) ratio concrete mixes under freezing-thawing (F-T) exposure. The added absorption is clearly demonstrated under either water or salt exposure with no appreciable difference noted. Air void degassing and subsequent saturation accelerated by the pumping effect is shown to cause void infillings commonly observed in concrete pavement exposed to prevalent freezing weather and deicing procedures in winter. Measured moisture uptake at two different Minimum temperatures (-10 degrees C and 20 degrees C) indicates equally significant absorption suggesting external moisture forced into the concrete interior upon freezing is a major pumping effect. Concurrent investigation on the cumulative mass loss and internal damage reveals the decoupling of salt scaling and internal frost damage governed by different mechanisms. This is enhanced by the silane and temperature effects on the mass loss and relative dynamic modulus (RDM) change. Silane treatment and a higher minimum temperature (-10 degrees C) are found to create much less scaling attributed to the restricted ice growth. However, the hydrophobic effect is neutralized by the hydraulic pressure at instant freezing, which maintains the universal pore saturation in concrete and eventually causes cracking. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过在冻融(F-T)暴露下低水灰比(w / b)的混凝土混合料中大量水分的吸收来研究泵送效果。在暴露于水或盐的情况下,明显增加了吸收,没有明显的差异。空气空隙脱气和随后的泵送作用加速了饱和,显示出通常在混凝土路面暴露于寒冷天气和冬季除冰过程中引起的空隙填充。在两个不同的最低温度(-10摄氏度和20摄氏度)下测得的水分吸收量表明吸收能力相同,这表明冻结后被迫进入混凝土内部的外部水分是主要的泵送作用。对累积质量损失和内部破坏的并行研究表明,盐垢和内部霜冻破坏的解耦由不同的机制决定。硅烷和温度对质量损失和相对动态模量(RDM)变化的影响增强了这一点。硅烷处理和较高的最低温度(-10摄氏度)被发现会由于结冰受限而产生的结垢少得多。但是,瞬间冻结时的液压作用抵消了疏水作用,从而保持了混凝土中普遍的孔隙饱和度并最终导致开裂。 (C)2017 Elsevier Ltd.保留所有权利。

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