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Effects of curing temperature on pull-out behavior and stiffness evolution of epoxy adhesives for NSM-FRP applications

机译:固化温度对用于NSM-FRP应用的环氧胶粘剂的拔出性能和刚度演变的影响

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摘要

The efficiency of the FRP-concrete strengthening system is strongly influenced by the mechanical properties of the epoxy adhesive, which depend on the curing temperature.In the present work, the influence of temperature on the curing process of the epoxy was examined. Two different temperatures were studied: 20 and 30 °C. The elastic modulus of the adhesive was continuously monitored by using a variant of the classical resonant frequency methods, called EMM-ARM (Elasticity Modulus Monitoring through Ambient Response Method). A simultaneous study of direct pull-out tests with concrete specimens strengthened with NSM carbon FRP laminate strips was carried out at the same two different temperatures to compare the evolution of bond performance with the E-modulus of epoxy since early ages. The results showed that increasing the curing temperature significantly accelerated both the curing process of the epoxy adhesive and the evolution of bond performance. Moreover, the EMM-ARM technique revealed its ability in clearly identifying the hardening kinetics of epoxy adhesives, allowing measurements since very early ages and in different environmental conditions.
机译:FRP-混凝土增强体系的效率在很大程度上取决于环氧树脂胶粘剂的机械性能,该性能取决于固化温度。在本工作中,研究了温度对环氧树脂固化工艺的影响。研究了两个不同的温度:20和30°C。通过使用经典共振频率方法的一种变体(称为EMM-ARM)(通过环境响应法进行弹性模量监测)来连续监测粘合剂的弹性模量。在相同的两个不同温度下,对用NSM碳FRP层压板条增强的混凝土标本进行的直接拉拔试验的同时研究,比较了自早期以来粘结性能与环氧E模量之间的关系。结果表明,提高固化温度显着促进了环氧胶粘剂的固化过程和粘结性能的发展。此外,EMM-ARM技术揭示了其能够清楚地识别环氧胶粘剂硬化动力学的能力,从而可以从很早的年龄开始并在不同的环境条件下进行测量。

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