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基于超声脉冲速度法对掺CSA膨胀剂的AAM砂浆初凝时间和弹性模量的研究

A Study on Initial Setting and Modulus of Elasticity of AAM Mortar Mixed with CSA Expansive Additive Using Ultrasonic Pulse Velocity.

作者信息

Ryu Gum-Sung, Choi Sung, Koh Kyung-Taek, Ahn Gi-Hong, Kim Hyeong-Yeol, You Young-Jun

机构信息

Department of Infrastructure Safety Research, Korea Institute of Civil Engineering and Building Technology, 283 Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si 10223, Korea.

Department of Civil Engineering, KyungDong University 27, Gyeongdongdaehak-Ro, Yangju-Si 11458, Korea.

出版信息

Materials (Basel). 2020 Oct 5;13(19):4432. doi: 10.3390/ma13194432.

Abstract

This study investigated the hardening process of alkali-activated material (AAM) mortar using calcium sulfoalumiante (CSA) expansive additive (CSA EA), which accelerates the initial reactivity of AAMs, and subsequent changes in ultrasonic pulse velocity (UPV). After the AAM mortar was mixed with three different contents of CSA EA, the setting and modulus of elasticity of the mortar at one day of age, which represent curing steps, were measured. In addition, UPV was used to analyze each curing step. The initial and final setting times of the AAM mortar could be predicted by analyzing the UPV results measured for 14 h. In addition, the dynamic modulus of elasticity calculated using the UPV results for 24 h showed a tendency similar to that of the static modulus of elasticity. The test results showed that the use of CSA EA accelerated the setting of the AAM mortar and increased the modulus of elasticity, and these results could be inferred using UPV. The proposed measurement method can be effective in evaluating the properties of a material that accelerates the initial reactivity.

摘要

本研究调查了使用硫铝酸钙(CSA)膨胀添加剂(CSA EA)的碱激活材料(AAM)砂浆的硬化过程,该添加剂可加速AAM的初始反应性,以及随后超声脉冲速度(UPV)的变化。在AAM砂浆与三种不同含量的CSA EA混合后,测量了代表养护阶段的砂浆在一天龄期时的凝结时间和弹性模量。此外,使用UPV分析每个养护阶段。通过分析14小时内测量的UPV结果,可以预测AAM砂浆的初凝和终凝时间。此外,使用24小时UPV结果计算的动态弹性模量显示出与静态弹性模量相似的趋势。试验结果表明,使用CSA EA加速了AAM砂浆的凝结并提高了弹性模量,并且这些结果可以通过UPV推断得出。所提出的测量方法在评估加速初始反应性的材料性能方面可能是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6799/7578927/635890ba152d/materials-13-04432-g001.jpg

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