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Effect of moisture and temperature on the thermal and mechanical properties of a ductile epoxy adhesive for use in steel structures reinforced with CFRP

机译:水分和温度对CFRP增强钢结构中使用的延性环氧胶粘剂热力学性能的影响

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摘要

CFRP has proven to be a material capable of being used in many engineering applications, highlighting its good properties for reinforcement of steel structures. In this study, a new CFRP-steel adhesive joint is evaluated by using a structural and ductile epoxy adhesive to join the CFRP reinforcements to the steel structure. On the one hand, the epoxy adhesive has been thermally characterized by means of its kinetics of curing (Kissinger and Model Free Kinetics methods), finding behavior similar to other epoxy adhesives. On the other hand, different surface treatments are studied in order to achieve the best mechanical properties of the joint. In addition, the suitability of this kind of joints is assessed under durability conditions (60 degrees C and 99% relative humidity) and under thermal fatigue. Shear tests are realized on specimens subjected to different exposure times, studying the mechanisms that affect the degradation of the adhesive joint in each environment. Breaking surfaces were analyzed by Scanning Electron Microscopy (SEM) and by Energy-dispersive X-ray Spectroscopy. A simplified Weibull model is used to evaluate the reliability of the joints during both durability and thermal fatigue processes. The thermal and mechanical properties of the adhesive are determined, showing better behavior against thermal fatigue because moisture in the durability process accelerates degradation of the adhesive joint.
机译:事实证明,CFRP是一种能够在许多工程应用中使用的材料,突出了其用于钢结构加固的良好性能。在这项研究中,通过使用结构性和延展性环氧胶粘剂将CFRP增强材料连接到钢结构上,对新型CFRP-钢胶粘剂连接进行了评估。一方面,已经通过其固化动力学(Kissinger和Model Free Kinetics方法)对环氧粘合剂进行了热学表征,发现其行为与其他环氧粘合剂相似。另一方面,研究了不同的表面处理,以实现接头的最佳机械性能。此外,在耐久性条件(60摄氏度和99%相对湿度)和热疲劳条件下评估这种接头的适用性。在经受不同暴露时间的样品上进行了剪切测试,研究了在每种环境下影响胶接点降解的机理。通过扫描电子显微镜(SEM)和通过能量色散X射线光谱法分析断裂表面。简化的威布尔模型用于评估耐久性和热疲劳过程中接头的可靠性。确定了粘合剂的热和机械性能,表现出更好的抗热疲劳性能,因为耐久性过程中的水分加速了粘合剂接头的降解。

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