加速养护与普通养护粉煤灰基混凝土强度比较

M. Khan, A. Javed, Mahboob Ali Choudhry
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引用次数: 0

摘要

混凝土最重要的性能是其抗压强度,这是在混凝土适当养护28天后进行的。该试验受养护条件、水灰比、运输方式、混凝土搬运、振动程度和配合比成分质量等因素的影响。本研究试图建立一个简单的数学模型,通过线性回归分析,从早期进行的试验结果中估计混凝土的28天抗压强度。这个简单的线性方程发展出28.5小时的关系。结果表明,通过方程计算得到的抗压强度预测值大部分在试验方法得到的抗压强度允许差值范围内,表明所得到的不同龄期混凝土抗压强度方程的可靠性。结果表明:粉煤灰掺量增加至30%替代量时,混凝土抗压强度随掺量的增加而增加,超过30%替代量后,混凝土抗压强度开始下降;这一论点完全符合为本研究所开展的所有文献。
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Strength Comparison of Accelerated Cured & Normal Cured Fly-Ash Based Concrete
The most important property of concrete is its compressive strength, which is carried out after 28-days of proper curing of concrete. This test is affected by other factors like the condition of curing, water to cement ratio, method of transportation, handling of the concrete, extent of vibrations and quality of the ingredients of mix proportion. This research study is an attempt to develop a simple mathematical model, by using linear regression analysis to estimate the 28-day fc’ (Compressive Strength) of concrete from the test results carried out at early age. This simple linear equation develops a relationship of 28.5 hours. These results show that most of the predicted values of compressive strength, calculated via equations, lie within permissible range difference for compressive strength achieved by experimental method, which is clear indication of credibility of the equations obtained for compressive strength at different age of concrete. The results show that compressive strength of concrete increases with the increase in content of FA (Fly Ash) upto 30% replacement, and the compressive strength of the concrete starts decreasing beyond 30% FA substitution. This argument is totally in line with all the literature carried out for this research.
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