Wang Dongquan, Yu Guangyun, Liu Shukui, Sheng Ping
State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, China.
School of Mechanics and Civil Engineering, China University of Mining and Technology, Xuzhou 221116, China.
Materials (Basel). 2021 Jan 25;14(3):566. doi: 10.3390/ma14030566.
Characterizing early-age properties is very important for the quality control and durability of cementitious materials. In this paper, an approach using embedded guided waves was adopted to monitor the changes in the mechanical proprieties of mortar and concrete during setting, and embedded thin rods with low-cost piezoelectric sensors mounted on top were used for guide wave monitoring. Through continuous attenuation monitoring of the guided waves, the evolution of mortar and concrete properties was characterized. Four different kinds of metallic rods were tested at the same time to find out the optimal setup. Meanwhile, shear wave velocities of the mortar and concrete samples were monitored and correlated to the attenuation, and setting time tests were also performed on these samples. Experimental results demonstrate that the proposed approach could monitor the evolution of the setting of cementitious materials quantitatively, and time of the initial setting could be determined by this technique as well. In addition, it is found that the attenuations of fundamental longitudinal guided wave mode are almost the same in concrete samples and mortar samples sieved from concrete, indicating that this technique is able to eliminate the effects of coarse aggregates, which makes it of great potential for in-situ monitoring of early age concrete.
表征早期性能对于胶凝材料的质量控制和耐久性非常重要。本文采用一种利用嵌入式导波的方法来监测砂浆和混凝土在凝结过程中力学性能的变化,并使用顶部安装有低成本压电传感器的嵌入式细棒进行导波监测。通过对导波的连续衰减监测,表征了砂浆和混凝土性能的演变。同时测试了四种不同的金属棒以找出最佳设置。此外,监测了砂浆和混凝土样品的剪切波速度并将其与衰减相关联,还对这些样品进行了凝结时间测试。实验结果表明,所提出的方法能够定量监测胶凝材料凝结的演变,并且该技术也能够确定初凝时间。此外,发现混凝土样品和从混凝土中筛出的砂浆样品中基本纵向导波模式的衰减几乎相同,这表明该技术能够消除粗骨料的影响,这使其在早期混凝土现场监测方面具有很大潜力。