砂浆龄期对织物-砂浆粘结性能的影响

A. Dalalbashi, B. Ghiassi, D. Oliveira
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摘要

纺织增强砂浆(TRM)复合材料作为砌体和历史建筑抗震加固的可持续解决方案受到了广泛关注。这种新系统由嵌入无机基体的纺织纤维组成,并作为外部粘结增强(EBR)系统应用于砌体和混凝土基材表面。织物与砂浆界面处的粘结是主要的应力传递机制,因此应深入研究。此外,trm在改善现有结构抗震性能方面的有效性高度依赖于其组件、材料、纺织品与砂浆粘合的耐久性及其长期性能。由于这些材料在砌体结构中的应用是新颖的,与它们的耐久性和长期性能有关的几个方面仍然不清楚。为此,一项新的研究已经启动,该研究着眼于时间对纤维和砂浆之间的机械性能和粘结行为的影响。为此,使用了两种不同的石灰基砂浆,以及钢纤维和玻璃纤维,研究了180天后砂浆龄期对TRM系统的影响。结果表明:在砂浆龄期早期,其力学性能和织物与砂浆的粘结性能都有所提高;另一个要记住的关键点是,随着砂浆龄期的增加,纺织品与砂浆的结合度和砂浆强度都会降低。
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Effect of Mortar Age on the Textile-to-Mortar Bond Behavior
Textile-reinforced mortar (TRM) composites have received extensive attention as a sustainable solution for seismic strengthening of masonry and historical structures. This new system is composed of textile fibers embedded in an inorganic matrix and is applied on the masonry and the concrete substrate surface as an externally bonded reinforcement (EBR) system. The bond at the textile-to-mortar interfaces is the main stress-transfer mechanism and, therefore, should be thoroughly investigated. Furthermore, the effectiveness of TRMs in improving the seismic performance of existing structures is highly dependent on the durability of its components, materials, textile-to-mortar bond, and their long-term behavior. Due to the novelty of these materials in application to masonry structures, several aspects related to the durability and long-term performance of them are still not clear. To that end, a new study has been launched that looks at the time effect on the mechanical properties and bond behavior between fiber and mortar. For this purpose, two different hydraulic lime-based mortars, as well as steel and glass fibers, are used to investigate the effect of mortar age on the TRM system after 180 days. The results show that at the early age of mortars, their mechanical properties, and the bond behavior of textile-to-mortar have been increased. Another critical point to remember is that by increasing the mortar age, textile-to-mortar bond and mortar strength are decreased.
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