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The Influence of Temperature on the Debonding of Externally Bonded CFRP

机译:温度对外部键合CFRP脱粘的影响

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Fiber Reinforced Polymers have proven to be effective strengthening materials in the construction industry, due to their low weight (easy to apply), non-corrosiveness and high strength. Extensive research has been carried out into the strengthening of concrete structures with externally bonded FRP. It turned out that debonding of the FRP is governing the design of most FRP strengthening applications. One of the parameters, which may affect the bond properties of the FRP-concrete joint, is the ambient temperature. Only little research into the influence of temperature on the bond behavior has been carried out so far. This paper presents the results of an exploratory experimental and numerical investigation in which the influence of temperature on the debonding behavior of externally bonded CFRP was investigated. Two different test setups were applied. Results showed that the failure load of CFRP strengthened concrete structures was affected by the temperature, but depended on the used test setup. Two types of failure were observed. For low to moderate temperatures (-10°C to + 40°C), failure occurred in the concrete, leaving 1-3 mm of concrete attached to the adhesive. For elevated temperatures (50°C to 75°C), failure of the adhesive-concrete interface occurred, without leaving any concrete attached to the adhesive.
机译:由于其低重量(易于施用),不腐蚀性和高强度,纤维增强聚合物已被证明是有效的强化建筑业材料。已经进行了广泛的研究,进入了外部粘合FRP的混凝土结构。事实证明,FRP的剥离是针对大多数FRP加强应用的设计。其中一个参数,其可能影响FRP - 混凝土关节的粘合性能,是环境温度。到目前为止,还将对债券行为的温度影响几乎没有研究。本文提出了探索性实验和数值研究的结果,研究了温度对外部键合CFRP的脱粘性行为的影响。应用了两种不同的测试设置。结果表明,CFRP强化混凝土结构的故障负荷受温度的影响,但依赖于使用的测试设置。观察到两种失败。对于低至温度(-10°C至+ 40°C),混凝土中发生故障,将1-3毫米的混凝土连接到粘合剂上。对于升高的温度(50°C至75°C),发生粘合剂混凝土界面的故障,而不将任何连接到粘合剂上的混凝土。

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