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Exploratory Study on Sulfate Attack Monitoring of Concrete Structures Using Piezoceramic Based Smart Aggregates

机译:基于压电陶瓷的智能骨料监测混凝土结构硫酸盐侵蚀的探索性研究

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Sulfate attack is one of the most frequent environmental attacks affecting concrete structures, which is manifested by expansive disruption and deterioration of cement paste. However, it is difficult to monitor the deterioration induced by sulfate attack as these attacks mainly occur in sulfate-bearing soils or ground waters. In this paper, the tentative experimental investigation on sulfate attack monitoring was carried out by using smart aggregate transducers and an active sensing method is proposed. A number of plain concrete columns with embedded smart aggregates were fabricated and then suffered to salt-fog exposure for several months. Active monitoring methods were performed to detect the deterioration of the specimens using smart aggregates. In addition, testing of the mechanical properties and water absorption ability of concrete specimens at different deterioration times was performed as well. Then the transmission mechanism of stress wave in concrete was discussed. The experimental results show that, with the growth of attacking time, the amplitude of the received signal decreased, and by calculating the damage index, the deterioration degree of concrete specimens was estimated. It is indicated that the proposed piezoceramic based SA monitoring method is valid in sulfate attack monitoring.
机译:硫酸盐侵蚀是影响混凝土结构的最常见的环境攻击之一,其表现为水泥浆的膨胀破坏和变质。但是,很难监测由硫酸盐侵蚀引起的恶化,因为这些侵蚀主要发生在含硫酸盐的土壤或地下水中。本文利用智能骨料传感器进行了硫酸盐侵蚀监测的初步实验研究,提出了一种主动传感方法。制造了许多带有嵌入式智能骨料的普通混凝土柱,然后经受了数月的盐雾暴露。进行了主动监测方法,以使用智能骨料检测样品的劣化。另外,还进行了在不同劣化时间下混凝土试样的机械性能和吸水能力的测试。然后讨论了应力波在混凝土中的传播机理。实验结果表明,随着攻击时间的增加,接收信号的幅度减小,通过计算损伤指数,可以估算出混凝土试件的劣化程度。结果表明,所提出的基于压电陶瓷的SA监测方法在硫酸盐侵蚀监测中是有效的。

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