Ultrasound Non-Destructive Characterization of Early Hydration of Cement Pastes: The Effects of Water-Cement Ratio and Curing Temperature

H. Banouni, Nabil Khatib, E. Ouacha, B. Faiz, I. Aboudaoud, H. Mesbah
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引用次数: 1

Abstract

A newly developed ultrasound method that acquires at the same time both reflected and transmitted P-waves, at different angles, using two immersion transducers of 0.5 MHz central frequency, is described in this present study. This non-destructive method allows calculating the longitudinal and transverse velocities, and thus, the Young modulus, so that its evolutions is followed in time domain. The closely correlation between the evolution in time domain of those calculated parameters and hydration properties of cement based materials was used to characterize the effects of different water-cement ratio and curing temperatures on early age hydration behaviour of cement pastes. To do so, cement samples were prepared by mixing Portland cement and freshwater. Results indicates that lower water to cement ratio reduces the workability and increases the Young modulus of resulted cement medium. Also, both ultrasound velocities and Young modulus values increases linearly with increasing curing temperature.
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水灰比和养护温度对水泥浆早期水化的超声无损表征
本文介绍了一种新开发的超声方法,该方法使用两个0.5 MHz中心频率的浸入式换能器同时获取不同角度的反射和透射p波。这种非破坏性的方法允许计算纵向和横向速度,从而计算杨氏模量,从而在时域中跟踪其演变。利用这些计算参数的时域演化与水泥基材料水化性能之间的密切关系,表征了不同水灰比和养护温度对水泥浆体早期水化行为的影响。为此,将波特兰水泥和淡水混合制备水泥样品。结果表明,较低的水灰比降低了形成的水泥介质的和易性,提高了杨氏模量。超声速度和杨氏模量随固化温度的升高呈线性增加。
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