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A Mathematical Model for the Electrical Resistivity of Cement Paste at Early Ages Considering the Partially Saturated State

机译:考虑部分饱和状态的早期时代水泥浆电阻率的数学模型

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摘要

For cementitious materials, electrical resistivity is often used in the study of the cement hydration process at early age, as one of the few indicators that can be continuously and non-destructively monitored. Variation characteristics of resistivity are widely reported to interact with the early-age performance of cement paste, such as hydration kinetics parameters and setting time. However, there is no reasonable mathematical model to predict the resistivity at early ages, especially within the first 24 h, due to significant changes in the porosity and degree of saturation. In this work, a mathematical model was developed by considering the partially saturated state and density change of C-S-H (calcium silicate hydrate). To verify the model, two experimental methods were chosen, including the non-contact electrical resistivity test and isothermal calorimetry test. The hydration heat and resistivity of cement paste with a water–cement ratio of 0.35 and 0.45 were continuously monitored for 3 days. In the resistivity test, embedded temperature sensors were used to monitor the internal temperature and temperature correction was treated carefully in order to obtain accurate data. The test results prove that the mathematical model can accurately predict electrical resistivity and describe the saturation state of early-age cement pastes under sealed curing.
机译:对于胶凝材料,电阻率通常用于在休眠中的水泥水合过程研究中,作为可以连续和无损监测的少数指标之一。众所周知,电阻率的变异特性与水泥浆料的早期性能相互作用,例如水合动力学参数和设定时间。然而,由于孔隙率和饱和度的显着变化,没有合理的数学模型预测早期的年龄,特别是在前24小时内的电阻率。在这项工作中,通过考虑C-S-H(硅酸钙水合物)的部分饱和状态和密度变化来开发一种数学模型。为了验证模型,选择了两种实验方法,包括非接触电阻率测试和等温热量测定试验。连续监测水水柱浆料的水合热量和水泥浆比例的水合热和电阻率3天。在电阻率测试中,使用嵌入式温度传感器监测内部温度和温度校正,以便获得准确的数据。测试结果证明了数学模型可以准确地预测电阻率,并描述密封固化下的早期水泥浆料的饱和状态。

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