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Concrete Maturity Method Using Variable Temperaturerncuring For Normal-strength Concrete Mixes.rnii: Theoretical Study

机译:常温混凝土的变温固化混凝土成熟度方法研究:理论研究

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Variable curing temperatures were used to simulate the condition of how mass concrete cures and how temperature affects strength development. For normal-strength portland cement concrete, higher curing temperature during the early age yields lower strength at a later age compared with an initial lower early-age curing temperature. Experimental work in all phases of this research clearly shows a crossover effect. However, results for maturity analysis indicated that the strength-maturity relationship does not reflect the strength result at a later age-this is related to one of the stated limitations of the existing ASTM C 1074 maturity method. Therefore, a modified equivalent age equation was developed, which takes into account the effect of the early-age concrete temperature on the long-term ultimate strength. The modified equation includes both the effect of the water diffusion through layers of hydrates and the effect of the chemical reaction (nucleation and growth) in forming new hydrates due to the combination of unhydrated cement with free water.
机译:使用可变的固化温度来模拟大体积混凝土如何固化以及温度如何影响强度发展的条件。对于普通强度的硅酸盐水泥混凝土,与初期较低的早期熟化温度相比,早期较高的熟化温度在较晚的熟化时强度较低。该研究各个阶段的实验工作清楚地表明了交叉效应。但是,成熟度分析的结果表明,强度-成熟度关系不能反映后期强度的结果,这与现有ASTM C 1074成熟度方法的所述限制之一有关。因此,考虑了早期混凝土温度对长期极限强度的影响,开发了一个修正的等效寿命方程。修改后的方程式既包括水在水合物层中扩散的影响,又包括由于未水合水泥与游离水的结合而形成新水合物时化学反应(成核和生长)的影响。

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