地质聚合物砂浆凝结过程的超声波技术监测研究
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湘潭大学 土木工程学院

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Study on ultrasonic monitoring of coagulation process of geopolymer mortar
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XiangTan University College of Civil Engineering

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    摘要:

    地质聚合物是一种绿色低碳胶凝材料,研究其凝结过程对于工程应用有重要的意义。为了研究地质聚合物凝结的机理和规律,采用三种超声波检测方法对放置在特制装置中的五组不同矿粉比(矿渣:粉煤灰)的地质聚合物砂浆进行实时监测。通过能量接收比对地质聚合物砂浆的初、终凝时间进行表征,并用贯入阻力法的结果进行验证。结果表明:地质聚合物砂浆的凝结速度会随着矿粉比的减小而变慢;透射法可以实现对砂浆的全程监测,其判定初凝时间的平均误差为7.9%,判定终凝时间的平均误差为6.6%;反射法判定砂浆初凝时间准确度高,其平均误差为2.8%;导波法可以全程监测凝结过程,其判定初凝时间的平均误差为3.3%,判定终凝时间的平均误差为2.5%。三种方法中,导波法更适用于监测地质聚合物砂浆的凝结过程。

    Abstract:

    Geopolymer is a kind of green and low carbon cementing material, and the study of the cementation process of geopolymer is essential for engineering application. In order to investigate the mechanism of geopolymer cementation, five groups of geopolymer mortars with different mixture proportion (slag: fly ash) were placed in a special device and monitored them in real time by three ultrasonic inspection methods. The initial and final setting time of the geopolymer mortar were characterized by energy reception ratios and verified with the results of the penetration resistance method. The results demonstrated that the setting rate of geopolymer mortar slows down with the decrease of mixture proportion. The ultrasonic transmission method could realized the whole monitoring of mortar. The mean error of initial setting time and final setting time of ultrasonic transmission method was 7.9% and 6.6% respectively. The reflection method has high accuracy in determining the initial setting time of mortar, and its mean error was 2.8%. The ultrasonic guide wave method could realized the whole monitoring of mortar. The mean error of initial setting time and final setting time of ultrasonic transmission method was 3.3% and 2.5% respectively. Among the three methods, ultrasonic guided wave method is more suitable for monitoring the coagulation process of geopolymer mortar.

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  • 收稿日期:2022-12-06
  • 最后修改日期:2023-03-18
  • 录用日期:2023-04-07
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