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Influence of curing temperature on the strength of cement-stabilisedartificial clays

机译:固化温度对水泥稳定人工粘土强度的影响

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The paper present results of a laboratory investigation on the influence of curing temperatureand time on the mechanical characterisation of cement-stabilised clays as used in deep soil mix applications.Numerical modelling, based on the Arrhenius equation, is also presented. Experimentally, this model wasapplied to a series of tests performed at different temperatures. For each temperature, unconfined compres-sive strength tests were performed at specific time intervals in order to follow the curing and the increase ofstrength with time. The clay used was artificial clay made up of 40% kaolin clay and 60% of silt (using silicaflour). Three different water contents were used to compare the performance of different soft clays. The resultsshowed that the strength increases with the temperature. It was also found that the activation energy is the samefor all three water content clays. Using the numerical modelling long-term behaviour of up to 2.4 years waspredicted.
机译:本文提出了对固化温度时间对深土稳定粘土的影响的实验室研究的结果,也提出了基于Arrhenius方程的人类建模。实验,该模型被施加到不同温度下进行的一系列测试。对于每个温度,以特定时间间隔进行非融合的包含强度试验,以便遵循固化和随时间的高分程增加。所使用的粘土是人造粘土,由40%高岭土粘土和60%的淤泥(使用SilicaFlour)组成。使用三种不同的水内容物来比较不同软粘土的性能。结果表明强度随温度的增加。还发现活化能量是所有三种含水含量的粘土。使用数值建模长期行为最高为2.4岁。

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