Time Depending Thermo Mechanical Bond Behavior of Epoxy Bonded Pre-Stressed FRP-Reinforcement

K. Borchert, K. Zilch
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引用次数: 12

Abstract

Synopsis: The development of different pre-stressed epoxy bonded CFRPreinforcement systems for retrofitting RC-structures continues. In addition to requirements concerning the ultimate limit state (ULS) pre-stressed systems could satisfy demands in regard to the serviceability state (SLS) like crack limitation or fatigue. In comparison with the well known material behavior of concrete under sustained loading epoxy resins show material properties more sensitive to thermal effects, for example loss of strength or creep deformations. In experimental tests the influence of permanent load and temperature is examined. The pure epoxy resin adhesive was evaluated in lab-shear tests and the structural behavior of the system in the form of epoxy bonded pre-stressed near surface mounted CFRP-strips. The experiments reveal a significant influence of the epoxy resin adhesive behavior on the long-term structural behavior in service. To evaluate the effects with regard to designs relevant problems as long-term development of transfer lengths of pre-stressed reinforcement or of the slip between reinforcement and concrete under varying load and thermal conditions results of a simulation model are presented.
环氧树脂粘结预应力frp -钢筋随时间的热机械粘合行为
摘要:用于rc结构改造的不同预应力环氧树脂粘结cfrp加固体系仍在继续发展。除了对极限状态(ULS)的要求外,预应力系统还可以满足对使用状态(SLS)的要求,如裂纹限制或疲劳。与众所周知的混凝土在持续载荷下的材料性能相比,环氧树脂显示出对热效应更敏感的材料性能,例如强度损失或蠕变变形。在实验测试中,考察了永久载荷和温度的影响。在实验室剪切试验中对纯环氧树脂胶粘剂进行了评价,并以环氧树脂粘结预应力近表面安装cfrp条的形式对体系的结构性能进行了评价。试验结果表明,环氧树脂粘接性能对结构长期使用性能有显著影响。为了评估在不同荷载和热条件下预应力钢筋的传递长度或钢筋与混凝土之间滑移的长期发展对设计的影响,给出了一个模拟模型的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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