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Long-term residual anchorage resistance of gradient anchorages for prestressed CFRP strips

机译:预应力CFRP条的梯度锚固的长期残余锚固阻力

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摘要

This paper presents findings from a series of experimental investigations on the long-term resistance of the gradient anchorage, a purely epoxy-based non-mechanical anchoring technique for prestressed carbon fiber reinforced polymer (CFRP) strips, after exposure to accelerated ageing conditions. A segment of the complete anchorage solution is simulated by anchoring a prestressed CFRP strip to a concrete block. A custom-designed clamping system on one end allows for maintaining the prestress force constant during exposure to accelerated ageing. Upon such an exposure, the specimens are tested in a conventional lap-shear test setup. Several exposure scenarios and their effect on the residual load carrying capacity are considered, namely the effect of carbonated concrete (CC), freeze-thaw cycles (FTC), as well as their combination. Forces and full-field displacements, the latter by means of a 3D-DIC system, were measured during the prestress-force-release and lap-shear tests. Results indicate a higher anchorage resistance for CC compared to the reference specimens. For both groups a debonding in the concrete substrate was observed. Specimens subjected to FTC exposure suffer from a significant reduction in residual anchorage resistance, as well as a shift in failure mode from a concrete substrate dominated to an epoxy/concrete interface failure. The current knowledge on the residual resistance of gradient anchorage has to be adapted accordingly.
机译:本文介绍了一系列实验研究的结果,这些实验研究了梯度锚固的长期阻力,这种梯度锚固是纯环氧树脂基非机械锚固技术,用于预应力碳纤维增强聚合物(CFRP)板条,但要经受加速老化条件。通过将预应力CFRP条锚固到混凝土块上,可以模拟完整锚固解决方案的一部分。一端的定制设计的夹紧系统可以使预应力在加速老化过程中保持恒定。在这样的暴露下,以常规的搭接剪切测试装置测试样品。考虑了几种暴露场景及其对残余承载能力的影响,即碳酸混凝土(CC),冻融循环(FTC)的影响及其组合。在预应力释放和搭接剪切测试中测量了力和全场位移,后者通过3D-DIC系统进行了测量。结果表明与参考样品相比,CC的锚固阻力更高。对于这两组,均观察到混凝土基材中的剥离。经受FTC暴露的样品的残余锚固强度显着降低,并且破坏模式从主要的混凝土基材转变为环氧/混凝土界面破坏。关于梯度锚固的残余阻力的当前知识必须相应地适应。

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