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Influence of the plastic hinge rotations on shear strength in continuous reinforced concrete beams with shear reinforcement

机译:塑性铰铰旋转对钢筋混凝土连续梁抗剪强度的影响

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Continuous reinforced concrete (RC) beams may develop significant plastic rotations to enable the redistribution of bending moments. These rotations occur at plastic hinges, which are subject to high shear forces. The influence of rotations on the shear strength for statically determined beams without shear reinforcement failing in shear after yielding of the flexural reinforcement has already been experimentally verified. However, this influence has not been studied in continuous members with shear reinforcement. An innovative tests system has been specially designed to develop shear failures before and after yielding of the flexural reinforcement in both statically determinate and indeterminate structures.Nine beams (9000 mm long, 250 mm wide, 450 mm high) with a shear reinforcement of phi 8/30 (rho(w) = 0.13%) and different longitudinal reinforcement ratios were tested under different load and support conditions.The shear strength provided by shear reinforcement and that provided by the other mechanisms of resistance (shear strength provided by concrete) for each specimen were calculated based on the critical shear crack width measurements performed by Digital Image Correlation (DIC). Bending rotation and crack rotation along the development length of the critical shear crack were also obtained by DIC.Based on the test results, the shear strength provided by concrete was studied in relation to the bending rotation and the average crack width in reinforced concrete beams with shear reinforcement. It was confirmed that the shear strength provided by concrete decreased with increasing both bending rotations and crack widths. The shear strength values predicted by different design codes (ACI 318-19, Eurocode 2 and Model Code 2010) were compared with the test results, and showed that these formulations did not properly capture the loss of shear strength caused by bending rotation.
机译:连续钢筋混凝土(RC)梁可能会产生明显的塑性旋转,从而能够重新分配弯矩。这些旋转在承受高剪切力的塑料铰链处发生。在抗弯钢筋屈服后,在没有抗剪钢筋破坏的情况下,旋转对静态确定梁的抗剪强度的影响已经通过实验验证。但是,这种影响尚未在具有剪力增强的连续构件中进行研究。专门设计了一种创新的测试系统,可以在静态确定和不确定结构中产生弯曲钢筋之前和之后产生剪切破坏.9根横梁(9000毫米长,250毫米宽,450毫米高)采用phi 8剪力增强/ 30(rho(w)= 0.13%)并在不同的载荷和支撑条件下测试了不同的纵向配筋率,每种配比由配筋和其他阻力机理(混凝土提供的抗剪强度)提供根据数字图像相关性(DIC)进行的临界剪切裂纹宽度测量值计算出试样。通过DIC得到了沿临界剪切裂纹扩展长度的弯曲旋转和裂纹旋转。根据试验结果,研究了混凝土提供的剪切强度与钢筋混凝土梁的弯曲旋转和平均裂缝宽度的关系。抗剪加固。可以确定的是,混凝土提供的剪切强度会随着弯曲旋转和裂缝宽度的增加而降低。将不同设计规范(ACI 318-19,Eurocode 2和Model Code 2010)预测的抗剪强度值与测试结果进行了比较,结果表明,这些配方不能正确捕捉弯曲旋转导致的抗剪强度损失。

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