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Efficiency of steel fibers in shear resistance of reinforced concrete beams without stirrups at different moment-to-shear ratios

机译:在不同弯矩比下,钢纤维对无箍筋的钢筋混凝土梁抗剪性能的影响

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An experimental program is conducted to investigate the effect of the moment-to-shear ratio on the shear capacity of reinforced concrete beams without stirrups. Shear beams made with steel fiber reinforced concrete (SFRC) are tested at shear-span-to-depth (a/d) ratios equal to 1.8, 2.25 and 3.0. Using the digital image correlation (DIC) technique, the critical shear crack is identified. The critical shear crack is formed at the location of the highest moment in the shear span. From measurements across the critical shear crack, a continuous dilatant behavior is observed. There is a continuous increase in the crack opening displacement with progressive slip across the crack faces throughout the load response. The dilatant expansion measured across the critical shear crack depends on the a/d ratio. For a given a/d ratio, the load is sustained for large crack openings in SFRC beams. At a higher a/d ratio, there is a larger applied moment at the shear crack, which produces a larger crack opening with increasing slip displacement across the shear crack. At the peak load, the applied moment (M) to shear (V) ratio given by M/(Vd) at critical shear crack increases with increasing a/d ratio. Larger crack opening with increasing M/(Vd) decreases the efficiency of fibers in providing shear resistance for continued deformation past the peak load.
机译:进行了一个实验程序,以研究弯矩比对无箍筋的钢筋混凝土梁的抗剪承载力的影响。用钢纤维混凝土(SFRC)制成的剪力梁以等于1.8、2.25和3.0的剪切跨度与深度(a / d)之比进行测试。使用数字图像相关(DIC)技术,可以确定临界剪切裂纹。临界剪切裂纹在剪切跨度中最高矩的位置处形成。通过跨临界剪切裂纹的测量,观察到连续的扩张行为。在整个载荷响应过程中,随着裂纹面的逐渐滑动,裂纹开口位移不断增加。在临界剪切裂纹上测得的膨胀膨胀取决于a / d比。对于给定的a / d比,在SFRC梁中较大的裂纹开口处承受载荷。在较高的a / d比下,剪切裂纹处施加的力矩较大,从而产生较大的裂纹开口,并且在剪切裂纹上的滑移位移增加。在峰值载荷下,临界剪切裂纹处的施加力矩(M)与剪切力(V)的比值由M /(Vd)给出,随a / d比的增加而增加。随着M /(Vd)的增加,较大的裂纹开度会降低纤维提供抗剪强度以使超过峰值载荷后继续变形的效率。

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