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Behavior and design of FRP bonded autoclaved aerated concrete beams

机译:FRP键合高压灭菌混凝土梁的行为与设计

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摘要

Fiber Reinforced Polymers (FRPs) have advantages such as lightness, high strength, and suppressing corrosion risk. There is a vast amount of research on the FRP strengthening of reinforced concrete elements. However, the behavior of FRP bonded Autoclaved Aerated Concrete (AAC) beams has not been extensively investigated in the past. In this study, several experiments were conducted to explore the performance of FRP bonded AAC beams. In this scope, unidirectional single layer carbon and glass fiber laminates with half or full of the beam width were bonded to the AAC. Test results were mainly evaluated by comparing the stiffness, strength, ductility, energy absorption capacity, and the cost of materials. Additionally, a numerical study (based on section analysis and finite element simulation) was conducted to estimate the load-deformation response of the specimens. Based on the analysis results, effective FRP strains were evaluated and compared with the recommendations given in the ACI 440.2R design guidelines for FRPs bonded to reinforced concrete. According to the limited test data, a 60% reduction appears to be appropriate while computing the effective FRP strains for FRP bonded AAC beams. (C) 2021 Elsevier Ltd. All rights reserved.
机译:纤维增强聚合物(FRPS)具有优点,如亮度,高强度和抑制腐蚀风险。钢筋混凝土元件的FRP强化有大量的研究。然而,FRP键合的自动灭菌的混凝土(AAC)梁的行为在过去尚未被广泛研究过。在这项研究中,进行了几个实验以探讨FRP键合AAC光束的性能。在该范围中,单向单层碳和玻璃纤维层叠在一半或充满光束宽度的层压物上粘合到AAC上。通过比较刚度,强度,延展性,能量吸收能力和材料成本来评估测试结果。另外,进行了数值研究(基于截面分析和有限元模拟)以估计样品的负载变形响应。基于分析结果,评估了有效的FRP菌株,并与ACI 440.2R设计指南给予钢筋混凝土的FRPS设计指南的建议进行了评估。根据有限的测试数据,在计算FRP粘结AAC光束的有效FRP菌束时,似乎是适当的60%的减少。 (c)2021 elestvier有限公司保留所有权利。

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