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Bond behavior of the interface between concrete and basalt fiber reinforced polymer bar after freeze–thaw cycles
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作者 Li HONG Mingming LI +3 位作者 Congming DU Shenjiang HUANG Binggen ZHAN Qijun YU 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2024年第4期630-641,共12页
The shear bond of interface between concrete and basalt fiber reinforced polymer(BFRP)bars during freeze–thaw(F–T)cycles is crucial for the application of BFRP bar-reinforced concrete structures in cold regions.In t... The shear bond of interface between concrete and basalt fiber reinforced polymer(BFRP)bars during freeze–thaw(F–T)cycles is crucial for the application of BFRP bar-reinforced concrete structures in cold regions.In this study,48 groups of pull-out specimens were designed to test the shear bond of the BFRP-concrete interface subjected to F–T cycles.The effects of concrete strength,diameter,and embedment length of BFRP rebar were investigated under numerous F–T cycles.Test results showed that a larger diameter or longer embedment length of BFRP rebar resulted in lower interfacial shear bond behavior,such as interfacial bond strength,initial stiffness,and energy absorption,after the interface goes through F–T cycles.However,higher concrete strength and fewer F–T cycles were beneficial for enhancing the interfacial bond behavior.Subsequently,a three-dimensional(3D)interfacial model based on the finite element method was developed,and the interfacial bond behavior of the specimens was analyzed in-depth.Finally,a degradation bond strength subjected to F–T cycles was predicted by a proposed mechanical model.The predictions were fully consistent with the tested results.The model demonstrated accuracy in describing the shear bond behavior of the interface under numerous F–T cycles. 展开更多
关键词 F-T cycle INTERFACE shear bond strength bond stressslip curves bond degradation
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高温处理后氯氧镁水泥粘贴CFRP-混凝土粘结性能研究 被引量:1
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作者 赵少伟 石可心 +1 位作者 郭蓉 王莲香 《北京理工大学学报》 EI CAS CSCD 北大核心 2023年第7期685-692,共8页
碳纤维增强聚合物(carbon fiber reinforced polymer,CFRP)已经广泛应用于外贴混凝土结构加固工程.氯氧镁水泥(magnesium oxychloride cement,MOC)因具有出色的力学和耐高温性能,被认为是高温工作环境下最有潜力取代有机胶黏剂的CFRP-... 碳纤维增强聚合物(carbon fiber reinforced polymer,CFRP)已经广泛应用于外贴混凝土结构加固工程.氯氧镁水泥(magnesium oxychloride cement,MOC)因具有出色的力学和耐高温性能,被认为是高温工作环境下最有潜力取代有机胶黏剂的CFRP-混凝土界面粘结材料.在研究中,首先针对优化配比后的改性MOC进行XRD物相组成分析,从微观解释高温作用后MOC强度的劣化;然后通过采用MOC胶黏剂的CFRP-混凝土界面的单剪试验,分析高温处理后的界面粘结性能,试验结果显示改性MOC胶黏剂的CFRP-混凝土结构加固效果良好,在经过高温损伤后仍具有一定强度.最后针对MOC作为界面胶的单剪试验CFRP表面应变测试数据偏低的问题,通过有限元模型修正的方法对界面本构关键参数进行修正,拟合得到考虑高温劣化影响的本构中三个关键参数的模型公式.得到的有限元模型和界面本构关系劣化公式适用于高温环境中MOC粘贴CFRP-混凝土界面粘结性能的模拟和计算. 展开更多
关键词 粘结滑移关系 CFRP-混凝土界面 氯氧镁水泥 高温损伤 有限元方法
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