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Using strain to evaluate influence of air content on frost resistance of concrete

机译:用应变评估空气含量对混凝土抗冻性的影响

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摘要

In order to ensure proper frost resistance, a design of artificial air-void system with defined geometric structure is needed in concrete. Strain, which may have certain inherent advantages compared to traditional test parameters, such as real-time nondestructive monitoring, more accurate and continuous with little error that is caused by manual intervention and so on, was used to evaluate influence of air content on frost resistance of concrete in this study. With the process of freeze-thaw cycles, the moving up strain hysteretic loop indicates that the continued accumulated and irreversible residual strain is generated in the concrete matrix. The residual strain values of concrete with more air content (4.5% and 6.9%) are obviously lower, indicating that their deformation and freeze-thaw damage degree are smaller. And not only that, residual strain is able to reflect some information of concrete early frost resistance, owning its special advantage compared with traditional parameters. Besides, the variation of freeze characteristic temperature Delta T-f and the variation of apparent frost heaving coefficient Delta alpha(f) defined in this study are able to characterize the freeze-thaw damage degree and frost resistance of concrete respectively.
机译:为了确保适当的抗冻性,需要在混凝土中设计具有定义的几何结构的人造气隙系统。与传统的测试参数相比,应变可能具有某些固有的优势,例如实时无损监测,更精确,更连续,人工干预等导致的误差小等,被用来评估空气含量对抗冻性的影响。本研究中的混凝土。在冻融循环过程中,向上应变的滞后回线表明在混凝土基体中产生了持续累积和不可逆的残余应变。空气含量较高的混凝土(4.5%和6.9%)的残余应变值明显较低,表明其变形和冻融破坏程度较小。不仅如此,残余应变还能够反映出混凝土早期抗冻性的一些信息,与传统参数相比具有其特殊的优势。此外,本研究定义的冻融特征温度ΔT-f的变化和表观冻胀系数Δα(f)的变化能够分别表征混凝土的冻融破坏度和抗冻性。

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