Experimental and numerical investigations of masonry ‎ beams performance under bending loads

Samarsamy Hamed, Mohamed Husain, Mahmoud Zaghlal, Alaa El-Sisi
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Abstract

An experimental and numerical study was achieved to investigate the behavior of masonry beams internally reinforced using carbon fiber-reinforced polymer (CFRP) and hybrid steel/CFRP reinforcements. In addition, the use of masonry equivalent material characteristics in the numerical modeling instead of modeling the blocks and mortar was evaluated. Three beams were built using cement bricks and tested in three-point bending with an effective simply supported span of 840 mm. The bricks were designed with a hole that was filled with grout before placing the rebar inside. Material characterization tests were performed to evaluate the mechanical properties of the brick, mortar, and masonry blocks. The beam samples were tested under static loads and the load deformation and failure load were monitored. Finite element methods were built for the beams and validated using the experimental results. The model was used to study more parameters such as the distance between the stirrups and the hybrid reinforcement configuration. Results showed that hybrid reinforcement is the best reinforcement configuration. It can be concluded that the reinforced masonry systems were able to achieve flexural resistance with maximum resistance when using the hybrid reinforcement.
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弯曲荷载作用下砌体梁性能的试验与数值研究
对碳纤维增强聚合物(CFRP)和钢/CFRP复合增强材料内加固砌体梁的性能进行了试验和数值研究。此外,还对采用砌体等效材料特性代替砌块和砂浆进行数值模拟进行了评价。用水泥砖建造了三根梁,并进行了三点弯曲测试,有效简支跨度为840毫米。砖的设计有一个洞,在把钢筋放进去之前填满浆液。进行了材料表征试验,以评估砖、砂浆和砌块的机械性能。在静荷载作用下对试件进行了测试,并对试件的荷载变形和破坏荷载进行了监测。建立了梁的有限元分析方法,并用实验结果进行了验证。该模型用于研究马镫间距和混合配筋构型等参数。结果表明,混合配筋是最佳配筋形式。结果表明,采用混合配筋时,配筋砌体体系能够获得最大的抗弯阻力。
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