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Freeze-thaw durability of high strength concrete under deicer salt exposure

机译:暴露于除冰盐下的高强度混凝土的冻融耐久性

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摘要

Freeze-thaw resistance of high strength concrete (HSC) and normal strength concrete (NSC) mixes with varying air contents was investigated by moisture uptake, mass loss and internal damage measurements. Sufficiently air-entrained HSC mixes demonstrate significant improvement in salt frost scaling resistance and the characteristics of air-void system is not a major factor. This can be attributed to the reduced capillary porosity and connectivity which curtails ice-growth promoted by capillary suction of surface liquid under freezing. A clear bi-linear pattern is found for the mass loss and moisture uptake curves of HSC mixes, the transition point of which coincides with each other. This demonstrates the importance of initial moisture condition in concrete prior to F-T test. Increased imperviousness of HSC to moisture ingress renders it more prone to long-term frost damage intrinsically, which is evidenced by much higher initial freezing strain in HSC from the length-change measurement on thin specimens at various degrees of saturation levels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过吸水率,质量损失和内部损伤测量,研究了不同空气含量的高强度混凝土(HSC)和普通强度混凝土(NSC)混合物的抗冻融性。足够的空气夹带的HSC混合物显示出对盐霜结垢阻力的显着改善,并且气孔系统的特性不是主要因素。这可以归因于减少的毛孔孔隙度和连通性,这降低了冷冻条件下表面液体的毛细抽吸促进的冰增长。对于HSC混合物的质量损失和水分吸收曲线,发现了清晰的双线性模式,其转变点彼此重合。这证明了在进行F-T测试之前,混凝土中初始湿度条件的重要性。 HSC对水分进入的不透性增加,使其本质上更容易受到长期的霜冻损害,这可以通过在不同饱和度水平上对薄试样进行长度变化测量得出,HSC的初始冻结应变高得多来证明。 (C)2015 Elsevier Ltd.保留所有权利。

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