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Residual Tensile Strength and Bond Properties of GFRP Bars after Exposure to Elevated Temperatures

机译:GFRP棒在高温下的残余拉伸强度和粘结性能

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摘要

The use of fiber reinforced polymer (FRP) bars in reinforced concrete members enhances corrosion resistance when compared to traditional steel reinforcing bars. Although there is ample research available on the behavior of FRP bars and concrete members reinforced with FRP bars under elevated temperatures (due to fire), there is little published information available on their post-fire residual load capacity. This paper reports residual tensile strength, modulus of elasticity, and bond strength (to concrete) of glass fiber reinforced polymer (GFRP) bars after exposure to elevated temperatures of up to 400 °C and subsequent cooling to an ambient temperature. The results showed that the residual strength generally decreases with increasing temperature exposure. However, as much as 83% of the original tensile strength and 27% of the original bond strength was retained after the specimens were heated to 400 °C and then cooled to ambient temperature. The residual bond strength is a critical parameter in post-fire strength assessments of GFRP-reinforced concrete members.
机译:与传统的钢钢筋相比,在钢筋混凝土构件中使用纤维增强聚合物(FRP)钢筋可增强抗腐蚀性。尽管对FRP钢筋和用FRP钢筋加固的混凝土构件在高温(由于着火)下的性能进行了充分的研究,但关于其烧后残余载荷能力的公开信息很少。本文报道了玻璃纤维增​​强聚合物(GFRP)筋在暴露于高达400°C的高温并随后冷却至环境温度后的残余拉伸强度,弹性模量和(与混凝土的)粘结强度。结果表明,残余强度通常随着暴露于温度的升高而降低。然而,在将样品加热至400℃然后冷却至环境温度之后,保留了高达83%的原始拉伸强度和27%的原始结合强度。残余粘结强度是GFRP增强混凝土构件火灾后强度评估中的关键参数。

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