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Effect of plastic rotation on the concrete contribution to shear strength of RC beams

机译:塑性旋转对RC梁剪切强度的混凝土贡献的影响

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This paper provides an analytical model to predict the concrete contribution to shear strength of reinforced concrete (RC) beams that fail in flexure. In the RC members subjected to cyclic loading, the stiffness and hysteretic energy dissipation decreases with diagonal web cracking in the plastic hinge region. The proposed method takes into account plastic rotation in the plastic hinge region by means of critical shear crack theory. To verify the concrete contribution to shear strength predicted by the proposed method, six normal- and high-strength RC beams having various shear span-to-effective depth ratios are tested under cyclic loading. The predictions by the proposed equation and various researchers' equations are compared to the test results. It is found that the proposed method is in good agreement with the test results.
机译:本文提供了一种分析模型,以预测弯曲中失效的钢筋混凝土(RC)梁的剪切强度的具体贡献。 在经过循环负载的RC构件中,刚度和滞后能量耗散随塑料铰链区域中的对角线纹裂化而降低。 所提出的方法通过临界剪切裂纹理论考虑塑料铰链区域中的塑性旋转。 为了验证通过所提出的方法预测的剪切强度的具体贡献,在循环载荷下测试具有各种剪切跨有效深度比的六个正常和高强度RC光束。 通过所提出的方程和各种研究人员方程式的预测与测试结果进行了比较。 结果发现,该方法与测试结果吻合良好。

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