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Hydration Monitoring Of Cement-based Materials With Resistivity And Ultrasonic Methods

机译:电阻率法和超声波法监测水泥基材料的水化

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Two test setups, the electrical resistivity and ultrasonic techniques, were used to monitor the hydration process of cement-based materials. In the electrical resistivity method, a non-contacting device was used. In the ultrasonic method, a wave was transmitted and measured by the embedded piezoelectric ultrasonic transducers, which had good coupling with the surrounding materials. The focus of the study was to detect the setting and hardening behaviors of cement paste during the first 7 days of hydration using the above techniques. Immediate after placing the cement paste into the mould, the measurement started and continued throughout the hydration process. The obtained resistivity and ultrasonic data were used to interpret the hydration process of the specimens. The correlation of two techniques was also studied. The results illustrated that both electrical resistivity and ultrasonic techniques were effective to accurately monitor the hydration of cement pastes. The resistivity method was able to study both the chemical reaction and physical change during hydration, while ultrasonic method was sensitive to physical change of cement only.
机译:电阻率和超声技术这两种测试设置用于监测水泥基材料的水化过程。在电阻率方法中,使用了非接触装置。在超声方法中,通过嵌入式压电超声换能器传输和测量波,该波与周围材料具有良好的耦合。研究的重点是使用上述技术在水合的前7天中检测水泥浆的凝结和硬化行为。在将水泥浆放入模具中后,立即开始测量并在整个水化过程中继续进行测量。所获得的电阻率和超声数据用于解释样品的水化过程。还研究了两种技术的相关性。结果表明,电阻率法和超声技术都可以有效地准确监测水泥浆的水合作用。电阻率法能够研究水化过程中的化学反应和物理变化,而超声波法仅对水泥的物理变化敏感。

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