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The results of the experimental studies of reinforced concrete structures of hydraulic structures with interconnect construction joints, reinforced by external reinforcement of carbon fiber

机译:碳纤维外部加固互连施工接头钢筋混凝土结构的实验研究结果,碳纤维外部加固

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摘要

For the purposes of experimental validation of application of external reinforcement of carbon fiber to reinforce reinforced concrete structures of hydraulic structures the experimental models of typical structures of hydraulic structures with inter-block construction joints were tested. At the same time, beam-type models of concrete of class B15 with a reinforcement percentage of 0.39 % and concrete of class B25 with a reinforcement percentage of 0.83 % were tested for the effect of bending moment. The models of fragments of reinforced concrete structures of hydraulic structures of concrete class B15 with a reinforcement percentage of 0.445 % and concrete B25 with a reinforcement percentage of 0.7 % were tested for сentral extension. Reinforced concrete beam-type models were reinforced with external reinforcement of carbon tapes of the type FibArm 530/300. Models of hydraulic structures fragments were reinforced by external reinforcement from carbon tapes of the type FibArm Tape 530/300 and from carbon composite lamellae of the type FibArm Lamel 12/50. The reinforced concrete beam-type models were reinforced with carbon strips (longitudinal bands on the lower stretched face and transverse belts in the span and supporting zones). The models of fragments of reinforced concrete structures of hydraulic structures were reinforced with carbon strips and carbon composite slats directed along the action of longitudinal tensile force. The results of experimental studies showed a significant increase in the strength of reinforced concrete structures of hydraulic structures due to their reinforcement by external reinforcement of carbon fiber, and also revealed a special character of the crack formation due to the presence of inter-block construction joints. Subject of the research: the subject of the study: reinforced concrete structures of hydraulic structures (with interblock construction joints), reinforced with external reinforcement of carbon fiber. Materials and methods: reinforced concrete models were made from ordinary heavy-weight concrete of classes B15 and B25 and reinforcement of A500C class. The outer reinforcement was made of carbon tapes of the type FibArm Tape 530/300 and FibArm Lamel12 / 50. Experimental studies were carried out on the basis of physical modeling of characteristic reinforced concrete structures of hydraulic structures with interblock building joints. In this model, the beam type of concrete class B15 with a percentage of reinforcement of 0.39 % and of concrete class B25 with a percentage of reinforcement 0.83 % were tested for the action of bending moment. Models of fragments of reinforced concrete structures of hydraulic structures from concrete class B15 with a reinforcement percentage of 0.445 % and of concrete B25 with a reinforcement percentage of 0.7 % were tested for the effect of central stretching. Experimental models were equipped with control and measuring equipment for determining the values of deflections, deformations of concrete and reinforcement elements of models, crack opening width and interblock joints. Results: in the course of experimental studies, a significant increase in the strength of reinforced concrete structures of the hydraulic structures (in 1.47-2.34 times) was obtained under the action of the bending moment and the central extension due to their reinforcement by external reinforcement from the carbon fiber. Conclusions: based on the obtained experimental data on the significant increase in the strength of reinforced concrete structures of hydraulic structures (by 1.47-2.34 times) due to reinforcement by carbon composite tapes and carbon composite lamella, the substantiation of the use of external reinforcement from carbon bands and lamellas under the action of a bending moment and central extension. Also, a special type of cracking was observed, due to the presence of interblock joints, the study of which allows controlling the implementation of technical solutions for reinforcing, repairing, reconstructing reinforced concrete structures of hydraulic structures.
机译:出于实验验证外,碳纤维外部加固的应用,加强钢筋混凝土结构的液压结构的液压结构典型结构的实验模型,液压结构与块间施工接头进行了典型结构。同时,B15级混凝土的光束型模型,增强百分比为0.39%,B25类的混凝土,对弯矩的效果进行了0.83%的0.83%。测试钢筋混凝土结构液压结构型号的型号为0.445%和加强百分比为0.7%的混凝土B25,对СeNtral延伸进行了0.7%。加强了钢筋混凝土梁型模型,采用纤维坊530/300型碳胶带的外部加固。液压结构片段的型号通过纤维胶带530/300型碳胶带和纤维式碎屑12/50型碳复合薄片加强了外部钢筋。钢筋混凝土梁型模型用碳条(下拉长面上的纵向带和跨度和支撑区域的横向带)加强。用沿纵向拉力作用的碳条和碳复合板材加固钢筋混凝土结构的碎片模型。实验研究的结果表明,由于碳纤维的外部增强,液压结构的钢筋混凝土结构强度的显着增加,并且还由于嵌块间施工接头的存在而揭示了裂缝形成的特殊性。研究主题:研究主题:液压结构钢筋混凝土结构(用互连施工接头),加强了碳纤维的外部加固。材料和方法:钢筋混凝土模型是由普通重型混凝土的B15和B25和A500C级的加固。外部钢筋由纤维胶带530/300型碳胶带和斐波马尔拉米尔12/50制成。基于具有互连建筑接头的液压结构的特性钢筋混凝土结构的物理建模进行实验研究。在该模型中,对弯矩的作用进行了百分比百分比的混凝土B15百分比的混凝土等级B15,百分比,百分比加固0.83%。对中央拉伸的效果进行了测试,对混凝土级B15液压结构液压结构液压结构液体结构型液体结构模型进行了效果,为中央拉伸的效果进行了0.75%的混凝土B25。实验模型配备了控制和测量设备,用于确定偏转值,混凝土和型号的加强元件的变形,裂缝开口宽度和互连接头。结果:在实验研究过程中,在弯矩和中央延伸的作用下获得了液压结构的钢筋混凝土结构强度(在1.47-2.34倍)的显着增加,由于外部加固的加强从碳纤维。结论:基于所获得的实验数据,由于碳复合胶带和碳复合薄片的增强,基于液压结构钢筋混凝土结构强度的显着增加(1.47-2.34倍),外部加固的使用弯曲力矩和中央延伸的作用下的碳带和薄片。而且,由于存在偶联接头,观察到一种特殊类型的裂缝,其研究允许控制用于加强,修复,重建液压结构的钢筋混凝土结构的技术解决方案的实施。

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