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首页> 外文期刊>Journal of Composites for Construction >Bond-Slip Model for FRP Laminates Externally Bonded to Concrete at Elevated Temperature
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Bond-Slip Model for FRP Laminates Externally Bonded to Concrete at Elevated Temperature

机译:高温下外部粘结到混凝土的FRP层压板的粘结滑移模型

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摘要

This paper presents a nonlinear local bond-slip model for fiber reinforced polymer (FRP) laminates externally bonded to concrete at elevated temperature for future use in the theoretical modeling of fire resistance of FRP-strengthened concrete structures. The model is an extension of an existing two-parameter bond-slip model for FRP-to-concrete interfaces at ambient temperature. The two key parameters employed in the proposed bond-slip model, the interfacial fracture energy, G_f, and the interfacial brittleness index, B, were determined using existing shear test data of FRP-to-concrete bonded joints at elevated temperature. In the interpretation of test data, the influences of temperature-induced thermal stress and temperature-induced bond degradation are properly accounted for. As may be expected, the interfacial fracture energy, Gf, is found to be almost constant initially and then starts to decrease when the temperature approaches the glass transition temperature of the bonding adhesive; the interfacial brittleness index, B, exhibits a similar trend. The proposed temperature-dependent bond-slip model is shown to closely represent the test data upon which it is based, despite the large scatter of the test data.
机译:本文提出了在高温下外部粘结到混凝土的纤维增强聚合物(FRP)层压板的非线性局部粘结滑动模型,以供将来在FRP增强混凝土结构的耐火性理论模型中使用。该模型是现有的两参数粘结滑移模型的扩展,该模型适用于环境温度下FRP到混凝土的界面。所提出的粘结-滑动模型中使用的两个关键参数,即界面断裂能G_f和界面脆性指数B,是使用现有的FRP-混凝土粘结接头在高温下的剪切试验数据确定的。在解释测试数据时,应适当考虑温度引起的热应力和温度引起的键降的影响。可以预料,发现界面断裂能Gf最初几乎是恒定的,然后在温度接近粘合剂的玻璃化转变温度时开始降低;界面脆性指数B表现出相似的趋势。尽管测试数据分散很大,但建议的与温度相关的粘结滑移模型已显示出可以紧密代表其所基于的测试数据。

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