BEHAVIOR OF HYBRID REINFORCED CONCRETE BEAMS ON FLEXURAL STRENGTH

Ali A. A. AL-Turaihi, H. Al-Katib
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Abstract

The objective of this research is to experimentally study the flexural behavior of hybrid reinforced concrete beams. Three test beams, each with dimensions of (2200 X 150 X 240) mm, were fabricated for this purpose. The first beam was constructed using ordinary concrete, while the second beam consisted of two layers of high-strength concrete in the compression zone and normal concrete in the tension zone. The third beam was entirely cast using high-strength concrete. In terms of reinforcement, all beams were equipped with 2φ12 steel bars in the tension zone and 2φ12 steel bars in the compression zone. Additionally, φ12 steel bars were employed to resist shear forces, distributed along the length of the beams with a spacing of 125 mm c/c. Two-point loading was applied to all beams until failure occurred. The results obtained from the experimental tests reveal that the use of hybrid concrete beams enhances the ultimate load capacity by approximately 20.93%. On the other hand, beams constructed entirely from high-strength concrete exhibited an increase in failure load capacity by approximately 28.68%.
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混合钢筋混凝土梁的抗弯强度行为
本研究的目的是通过实验研究混合钢筋混凝土梁的抗弯行为。为此,我们制作了三根试验梁,每根的尺寸均为(2200 X 150 X 240)毫米。第一根梁使用普通混凝土,第二根梁在受压区由两层高强度混凝土组成,在受拉区由普通混凝土组成。第三根横梁全部使用高强度混凝土浇筑。在钢筋方面,所有梁的受拉区和受压区都分别安装了 2φ12 钢筋。此外,还采用了 φ12 钢筋来抵抗剪力,这些钢筋沿梁的长度方向分布,间距为 125 mm c/c。对所有横梁施加两点荷载,直至发生破坏。实验结果表明,混合混凝土梁的极限承载能力提高了约 20.93%。另一方面,完全由高强度混凝土制成的梁的破坏荷载能力提高了约 28.68%。
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