Perkuatan Balok Beton Bertulang Yang Mengalami Kegagalan Geser Menggunakan Metode Deep Embedment

Fahmuji Kurniawan, Alfian ' Kamaldi, Enno Yuniarto, Ridwan
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Abstract

Bridges are infrastructure buildings that are commonly used and very functional in everyday. One of the structural components of the bridge is a reinforced concrete beam as a load bearer that will be forwarded to the foundation. The shear capacity of reinforced concrete beam structures sometimes cannot meet the existing requirements. This can be caused by increased loads, inadequate shear strength in the initial design and material damage due to natural factors. There are several methods that have been carried out to overcome the decrease in shear strength in beam structures, namely reinforcement methods by externally bonded (EB) and near-surface mounted (NSM). In reality, shear reinforcement with EB and NSM methods in implementation only relies on epoxy adhesion and concrete blankets, which still causes structural failure. The deep embedment strengthening method (DE) can be proposed as a shear reinforcement for reinforced concrete beams to overcome the previous problems. Reinforcement with DE method is a shear reinforcement that is reinforced in the core of reinforced concrete beams. This research was conducted by embedding 8 reinforcements vertically with a distance of 200 mm along the shear span. In this study, finite element modeling was carried out using ABAQUS. The results of finite element modeling with the DE method showed that the maximum load was 30.646 kN and the maximum deflection was 13.00 mm. The collapse model that occurs from finite element modeling on test specimens with DE reinforcement experiencing flexural failure.
用深度嵌入方法滑动失败的钢筋混凝土块
桥梁是一种常用的基础设施建筑,在日常生活中具有很强的功能性。桥梁的结构部件之一是钢筋混凝土梁作为承载量,将被转发到基础。钢筋混凝土梁结构的抗剪承载力有时不能满足现有的要求。这可能是由于载荷增加、初始设计抗剪强度不足以及自然因素造成的材料损坏造成的。为了克服梁结构抗剪强度的下降,有几种方法已被采用,即外粘接(EB)加固方法和近表面安装(NSM)加固方法。在实际应用中,EB法和NSM法的剪力加固仅依赖于环氧树脂粘结和混凝土毯层,仍然会导致结构破坏。深埋加固方法可作为钢筋混凝土梁的抗剪加固方法,克服上述问题。DE法配筋是在钢筋混凝土梁的核心处加筋的一种剪力配筋。本研究采用沿抗剪跨垂直埋置8根200 mm钢筋的方法。本研究采用ABAQUS进行有限元建模。采用DE法进行有限元模拟结果表明,最大荷载为30.646 kN,最大挠度为13.00 mm。由有限元模型对受弯破坏的DE钢筋试件进行的破坏模型。
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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