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Bond Behavior of CFRP-to-Steel Bonded Joints at Mild Temperatures: Experimental Study

机译:温度温度下CFRP-钢结构接头的粘结行为:实验研究

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The performance of steel structures strengthened with externally bonded fiber-reinforced polymer (FRP) rely heavily on the interfacial shear stress transfer mechanism of the FRP-to-steel bonded interface. Much is known about the behavior of FRP-to-steel bonded joints under mechanical loading, but little is known about the performance of this type of bonded joints at elevated temperatures. Almost all adhesives typically used in FRP-to-steel applications experience a change in their mechanical behavior at temperatures 70 degrees C. Therefore, gaining a sound understanding of the behavior of FRP-to-steel bonded joints at elevated temperatures is necessary. This paper presents a series of tests where carbon FRP (CFRP)-to-steel bonded joints are subjected to elevated temperatures. The outcomes of this paper showed that, at elevated temperatures, the dominant failure mode of the CFRP-to-steel bonded joints is the cohesion failure within the adhesive. The bond strength was found to increase with the temperature until the heat deflection temperature (HDT). The bond-slip behavior of the interface was found to undergo significant changes with increasing temperature. Specifically, the initial elastic stiffness and the peak shear stress were found to decrease as the temperature increases. The fracture energy was found to increase at temperatures below the HDT but then decrease drastically when the temperatures exceed the HDT. (C) 2020 American Society of Civil Engineers.
机译:用外键合纤维增强聚合物(FRP)强化钢结构的性能依赖于FRP - 钢结构界面的界面剪切应力转移机理。关于机械负荷下FRP - 钢结构接头的行为是众所周知的,但是关于这种类型的粘合接头在升高的温度下的性能很少。几乎所有通常用于FRP到钢应用中的粘合剂都会在温度<70摄氏度下经历其机械行为的变化。因此,需要在高温下进行对FRP - 钢结构接头的行为的声音理解。本文介绍了一系列测试,其中碳FRP(CFRP)-To钢粘合接头受到升高的温度。本文的结果表明,在升高的温度下,CFRP-钢结构接头的显性失效模式是粘合剂内的内聚力破坏。发现粘合强度随着温度而增加,直到热偏转温度(HDT)。发现界面的粘合性净化行为随着温度的增加而发生重大变化。具体地,发现初始弹性刚度和峰值剪切应力随着温度升高而降低。发现断裂能量在低于HDT的温度下增加,但是当温度超过HDT时,随后会急剧下降。 (c)2020年美国土木工程师协会。

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