Flexural Behavior of Two-layers Reinforced Concrete Beams

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
Halmat B. Najm
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Abstract

High-strength concrete is used to reduce the size of the beams in addition to enhancing the strength, this leads to overestimated cost in comparison with normal-strength concrete while using normal-strength concrete leads to the overestimated amount of concrete (layer size) of the beam section. For balancing the condition between the cost and size of beams, the benefit of both materials is used, by using beams in two layers, high-strength concrete in the compression zone (top layer), which is more beneficial for beam strength, and normal strength concrete in tension zone (bottom layer), which is no need using high strength concrete the in-tension zone. This study investigates the flexural and shear behavior of reinforced concrete beams consisting of two layers with different concrete strengths (grades), for beams with and without shear reinforcement (stirrups), considering the effect of shear-span ratio, layer thickness, layer compressive strength, and the overlap time casting of the two layers. The experimental program consists of a total of nineteen reinforced concrete beams of dimension (125 mm x 250 mm) with a total length of 1200 mm, the beams are reinforced with longitudinal reinforcement (4Ø12mm) and using (Ø8mm) bar as transverse reinforcement (stirrups). The experimental results show that the crack pattern of the two-layer reinforced concrete is closer to the crack of the control beam with one layer. Increasing the compressive strength of the concrete of the top layer, the ultimate failure load increased by (8.35%, 15.6%, and 18.85%), with respect to the (control beam) with the full depth of normal concrete. By increasing the high-strength layer thickness, the value of shear strength (Vc) and ultimate shear strength (Vu) increased linearly. The casting overlap time of up to (60 min) can be used for casting two-layered reinforced concrete beams, which is recommended, beyond this time the strength of the shear strength (Vc) and, ultimate shear strength (Vu) decreases. With increasing the shear span ratio (a/d) from (1 to 1.5 and 2) the ultimate load failure decreased by (33% and 50%). The shear strength capacity decreases with increasing stirrup spacing.
两层钢筋混凝土梁的受弯性能
高强度混凝土除了增强强度外,还用于减小梁的尺寸,与普通强度混凝土相比,这会导致高估成本,而使用普通强度混凝土会导致高估梁截面的混凝土量(层尺寸)。为了平衡梁的成本和尺寸之间的条件,利用了两种材料的优点,通过在两层中使用梁,压缩区(顶层)使用高强混凝土,这对梁的强度更有利,而在受拉区(底层)使用普通强度混凝土,这就不需要在受拉区使用高强混凝土。考虑剪力跨比、层厚、层抗压强度和两层浇筑重叠时间的影响,研究了两层不同混凝土强度(等级)的钢筋混凝土梁的抗剪性能。试验方案包括共19根尺寸为(125毫米× 250毫米)的钢筋混凝土梁,总长度为1200毫米,梁的纵向钢筋(4Ø12mm)和使用(Ø8mm)钢筋作为横向钢筋(箍筋)。试验结果表明,两层钢筋混凝土的裂缝形态更接近单层控制梁的裂缝形态。随着顶层混凝土抗压强度的增加,其极限破坏荷载相对于普通混凝土全深度下的(控制梁)分别增加了8.35%、15.6%和18.85%。随着高强度层厚度的增加,抗剪强度(Vc)和极限抗剪强度(Vu)值呈线性增加。浇筑双层钢筋混凝土梁时,建议浇筑重叠时间不超过(60min),超过此时间,抗剪强度(Vc)和极限抗剪强度(Vu)减小。随着剪跨比(a/d)从(1)增加到(1.5)和(2),极限荷载破坏分别降低(33%和50%)。抗剪能力随箍条间距的增大而减小。
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
Journal of Polytechnic-Politeknik Dergisi
Journal of Polytechnic-Politeknik Dergisi ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
125
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