Corbels strengthened with cfrp under deferent loading

Q1 Engineering
A. Joudah, Shaymaa Abdelghany Mohamed, M. Elwi
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引用次数: 0

Abstract

Short cantilevers under loads are known as corbels, and they generally have a detrimental impact on the strength of concrete structural components by reducing their resistance to external loads. Strengthening with CFRP strips as an externally bounded approach is employed to raise that. The behavior and durability of strengthened corbels under (constant and incremental) loads are examined in this research. Twelve double corbels were cast and tested as part of the experimental program, with the dimensions of the corbels on all specimens remaining constant. While the other nine are left un-fortified as control corbels, nine of them are strengthened using CFRP strips in various patterns. The results indicate that the maximum load capacity of corbels is affected by both constant and incremental loads. In addition, the ultimate load and ultimate deflection of the legs subjected to five load cycles were less than those subjected to constant stress. The bull legs reinforced with externally bonded CFRP strips demonstrated a significant increase in ultimate load under any applied load but a reduction in ultimate deflection relative to the unreinforced bull legs under the same applied load. All failures of the bull limb were ascribed to the unbounded CFRP strips.
不同荷载作用下碳纤维布加固钢筋
荷载作用下的短悬臂被称为支撑梁,它们通常通过降低混凝土结构构件对外部载荷的抵抗力而对其强度产生不利影响。采用CFRP条作为外部有界的方法进行加固以提高其强度。在本研究中,研究了加固梁在(恒定和增量)荷载下的行为和耐久性。作为实验计划的一部分,我们铸了12个双支柱,并对其进行了测试,所有样本上的支柱尺寸保持不变。其他9个没有加固,作为控制支柱,其中9个使用CFRP条以不同的方式加固。结果表明,恒荷载和增量荷载对支撑结构的最大承载能力都有影响。此外,在5次荷载循环作用下,腿的极限荷载和极限挠度均小于恒应力作用下的极限荷载和极限挠度。外部粘结CFRP条加固的牛腿在任何荷载作用下的极限载荷都显著增加,但在相同荷载作用下,相对于未加固的牛腿,其极限挠度有所减少。公牛翼的所有破坏都是由于CFRP条的无界造成的。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
140
审稿时长
7 weeks
期刊介绍: *Industrial Engineering: 1 . Ergonomics 2 . Manufacturing 3 . TQM/quality engineering, reliability/maintenance engineering 4 . Production Planning 5 . Facility location, layout, design, materials handling 6 . Education, case studies 7 . Inventory, logistics, transportation, supply chain management 8 . Management 9 . Project/operations management, scheduling 10 . Information systems for production and management 11 . Innovation, knowledge management, organizational learning *Mechanical Engineering: 1 . Energy 2 . Machine Design 3 . Engineering Materials 4 . Manufacturing 5 . Mechatronics & Robotics 6 . Transportation 7 . Fluid Mechanics 8 . Optical Engineering 9 . Nanotechnology 10 . Maintenance & Safety *Computer Science: 1 . Computational Intelligence 2 . Computer Graphics 3 . Data Mining 4 . Human-Centered Computing 5 . Internet and Web Computing 6 . Mobile and Cloud computing 7 . Software Engineering 8 . Online Social Networks *Electrical and electronics engineering 1 . Sensor, automation and instrumentation technology 2 . Telecommunications 3 . Power systems 4 . Electronics 5 . Nanotechnology *Architecture: 1 . Advanced digital applications in architecture practice and computation within Generative processes of design 2 . Computer science, biology and ecology connected with structural engineering 3 . Technology and sustainability in architecture *Bioengineering: 1 . Medical Sciences 2 . Biological and Biomedical Sciences 3 . Agriculture and Life Sciences 4 . Biology and neuroscience 5 . Biological Sciences (Botany, Forestry, Cell Biology, Marine Biology, Zoology) [...]
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