Flexural behavior of CFRP-strengthened reinforced concrete beams rubberized with finely minced rubber tire

Q1 Engineering
Adnan Abdullah Adday, Ahmed Sultan Ali
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引用次数: 0

Abstract

Although using rubber to create reinforced concrete substrates has many benefits, using rubberized concrete substrates, such as beams, is still limited. Where concrete with rubber included in it starts to lose a percentage of its mechanical qualities, such as flexural strength. Conversely, a significant portion of structural uses for strengthening reinforced concrete beams using exterior carbon fiber reinforced polymer (CFRP) sheets are for flexural strengthening. This study used externally bonded carbon fiber-reinforced polymer (CFRP) sheets to compensate for the reduction in flexural strength when creating rubberized concrete beams. The reinforced concrete beams used in this study were divided into three groups, each with three beams. Waste tire rubber was replaced (5%) of the fine aggregate volume in the first group and replaced (10%) in the second group. The reference group consists of the third set of beams. The first concrete beam in any group was always devoid of external strengthening, the second beam had one layer and the third beam had two layers of (CFRP) sheet. The third layer of strengthening was numerically represented using ABAQUS, a finite element analysis program. The results indicate that for two-volume replacement rates of fine aggregate (5 and 10) %, a decrease in ductility will have been accompanied by an improvement in the flexural strength of the rubberized concrete beam when externally strengthening with one, two, and three layers of (CFRP) sheets.
细碎橡胶轮胎涂胶cfrp加固混凝土梁的受弯性能
虽然使用橡胶制造钢筋混凝土基板有很多好处,但使用橡胶混凝土基板,如梁,仍然是有限的。含有橡胶的混凝土开始失去一定比例的机械性能,比如抗弯强度。相反,使用外部碳纤维增强聚合物(CFRP)板加强钢筋混凝土梁的结构用途的很大一部分是用于抗弯加固。本研究使用外部粘结碳纤维增强聚合物(CFRP)板,以弥补在制造橡胶混凝土梁时挠曲强度的降低。本研究中使用的钢筋混凝土梁分为三组,每组有三根梁。用废轮胎橡胶替代第一组细骨料体积的5%,第二组替代10%。参考组由第三组光束组成。在任何一组中,第一根混凝土梁总是没有外部加固,第二根梁有一层,第三根梁有两层(CFRP)板。第三层强化采用有限元分析程序ABAQUS进行数值表示。结果表明,对于细骨料的两体积替换率(5%和10%)%,延性的降低将伴随着橡胶混凝土梁的抗弯强度的提高,当外部加固一层,两层和三层(CFRP)板材。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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