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Ultrasonic monitoring of the early-age hydration of mineral admixtures incorporated concrete using cement-based piezoelectric composite sensors

机译:使用水泥基压电复合传感器对掺入混凝土的矿物掺合料的早期水化进行超声监测

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The early-age hydration processes of concretes with mineral admixtures have been monitored and evaluated by a newly developed ultrasonic method based on embedded cement-based piezoelectric composite sensors. With the embedded ultrasonic (P-wave) measurement system, the waveform, wave velocity, attenuation coefficient index, and frequency-domain spectrum of detected ultrasonic waves during hydration can be recorded. The mineral admixtures examined include fly ash, slag, and silica fume, which replace part of the cement in concrete mixtures. It is found that the ultrasonic transmission parameters can be related to the microstructure changes of the concrete. Both the acceleration effects of silica fume and the retardation effects of fly ash and slag on the early hydration of concrete can be determined and explained through the analysis and comparison of the characteristics of the velocity curves. The attenuation coefficient index curve provides additional observation for the study of hydration kinetics. Moreover, the function of fresh concrete in filtering the high-frequency component of the wave varies with time, and concrete can be considered as low-pass frequency spectral filter. Frequency spectra analysis at different ages of fresh concrete provides useful information to reveal the early-age hydration process.
机译:含矿物掺合料的混凝土的早期水化过程已通过基于嵌入式水泥基压电复合传感器的最新开发的超声波方法进行了监测和评估。使用嵌入式超声波(P波)测量系统,可以记录水合作用期间检测到的超声波的波形,波速,衰减系数指数和频域频谱。检查的矿物外加剂包括粉煤灰,矿渣和硅粉,它们代替了混凝土混合物中的部分水泥。发现超声传输参数可能与混凝土的微观结构变化有关。通过分析和比较速度曲线的特性,可以确定和解释硅粉的加速作用以及粉煤灰和矿渣对混凝土早期水化的阻滞作用。衰减系数指数曲线为水化动力学研究提供了额外的观察依据。而且,新鲜混凝土在过滤波的高频成分中的功能随时间而变化,混凝土可以被认为是低通频谱滤波器。新鲜混凝土不同年龄的频谱分析为揭示早期水化过程提供了有用的信息。

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