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Concrete Maturity Method Using Variable Temperature Curing For Normal And High-strength Concrete.rni: Experimental Study

机译:常温和高强度混凝土变温养护的混凝土成熟度方法:实验研究

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The maturity method is used to estimate the effects of time and temperature on the strength development of concrete. This paper shows how variable curing temperatures affect strength development for both normal and high-strength concrete using the maturity concept. Experimental results for normal-strength concrete clearly show the crossover effect of strength development as the time-of-peak temperature varied. However, this crossover effect did not exist after actual ages were converted to the temperature-dependent equivalent age. In other words, the existing maturity method does not include the effect of varying the time-to-peak temperatures but instead includes the effect of the magnitude-of-peak temperatures. This fact for normal-strength concrete coincides with the American Society of Testing Materials stated limitation that the existing maturity method does not take into account the effect of early age temperature on long-term ultimate strength. For high-strength concrete, the results were inconclusive. The results of this 3-year study are used as a basis for an improved concrete maturity function called the modified maturity function.
机译:成熟度方法用于估计时间和温度对混凝土强度发展的影响。本文使用成熟度概念来说明可变的固化温度如何影响普通和高强度混凝土的强度发展。普通强度混凝土的实验结果清楚地表明,随着峰值温度的变化,强度发展的交叉效应。但是,在将实际年龄转换为与温度相关的等效年龄之后,这种交叉效应就不存在了。换句话说,现有的成熟度方法不包括改变到达峰值时间的温度的影响,而是包括峰值温度的影响。对于普通强度混凝土,这一事实与美国材料试验学会指出的局限性一致,即现有的成熟度方法未考虑早期温度对长期极限强度的影响。对于高强度混凝土,结果尚无定论。这项为期三年的研究结果被用作改进的混凝土成熟度函数(称为改进的成熟度函数)的基础。

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