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Creep behavior and durability of concrete elements strengthened with NSM CFRP strips

机译:NSM CFRP条增强了混凝土构件的蠕变性能和耐久性

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摘要

This paper presents an experimental program aimed to better understand durability and long-term deformational performance of concrete structures strengthened with the near-surface mounted (NSM) technique. The conducted experiments include beam pullout specimens and slabs. Both types of specimens were submitted to sustained loads under the following environmental conditions: (i) placed in the laboratory premises; (ii) immersed in a water tank at 20ºC with 0% of chlorides; (iii) immersed in a water tank at 20ºC with 3.5% of chlorides; (iv) submitted to wet/dry cycles at 20ºC with 3.5% of chlorides. The mid-span vertical deflection of the slabs was continuously monitored, whereas the beam pullout specimens had their loaded end slip monitored. Creep, degradation and their relation with temperature were some of the observations pointed out. The effect of creep is practically negligible in the beam pull out tests and the evolution of the loaded end slip was mainly controlled by the environmental temperature at the lab. Nonetheless, the slabs have a pronounced creep effect, despite it has been mitigated when the slabs were submitted in water. The paper presents the general description of the experimental program and the first results pertaining to sustained loadings until ages up 439 days (current state of the process).
机译:本文提出了一个实验程序,旨在更好地了解采用近表面安装(NSM)技术加固的混凝土结构的耐久性和长期变形性能。进行的实验包括梁拉样和平板。两种标本均在以下环境条件下承受持续载荷:(i)放置在实验室场所; (ii)浸入20ºC的水箱中,并注入0%的氯化物; (iii)浸入20ºC的水箱中,其中含有3.5%的氯化物; (iv)在20ºC下用3.5%的氯化物进行湿/干循环。连续监测板的中跨垂直挠度,而对拉梁试样的载荷端滑移进行监测。指出了蠕变,降解及其与温度的关系。蠕变的影响在束拉试验中几乎可以忽略不计,而载荷端滑移的演变主要受实验室环境温度的控制。虽然如此,当将平板放在水中时,平板具有明显的蠕变效应。本文介绍了实验程序的一般说明,以及有关持续负荷直到439天(过程的当前状态)的最初结果。

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