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Experimental behavior and shear bearing capacity calculation of RC columns with a vertical splitting failure

机译:垂直劈裂破坏的RC柱试验特性及抗剪承载力计算

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The behavior of reinforced concrete (RC) columns made from high strength materials was investigated experimentally. Six high-strength concrete specimen columns (1: 4 scale), which included three with high-strength transverse reinforcing bars and three with normal-strength transverse reinforcement, were tested under double curvature bending load. The effects of yielding strength and ratio of transverse reinforcement on the cracking patterns, hysteretic response, shear strength, ductility, strength reduction, energy dissipation and strain of reinforcement were studied. The test results indicated that all specimens failed in splitting failure, and specimens with high-strength transverse reinforcement exhibited better seismic performance than those with normal-strength transverse reinforcement. It also demonstrated that the strength of high-strength lateral reinforcing bars was fully utilized at the ultimate displacements. Shear strength formula of short concrete columns, which experienced a splitting failure, was proposed based on the Chinese concrete code. To enhance the applicability of the model, it was corroborated with 47 short concrete columns selected from the literature available. The results indicated that, the proposed method can give better predictions of shear strength for short columns that experienced a splitting failure than other shear strength models of ACI 318 and Chinese concrete codes.
机译:实验研究了由高强度材料制成的钢筋混凝土柱的性能。在双曲率弯曲载荷下测试了六根高强度混凝土标本柱(比例为1:4),其中包括三根具有高强度横向钢筋和三根具有正常强度横向钢筋。研究了屈服强度和横向钢筋配比对钢筋的开裂模式,滞后响应,剪切强度,延性,强度降低,能量耗散和应变的影响。测试结果表明,所有试件均未发生劈裂破坏,高强度横向钢筋的抗震性能优于普通强度横向钢筋。这也表明,在极限位移下,高强度侧钢筋的强度得到了充分利用。根据中国混凝土规范,提出了经历了劈裂破坏的混凝土短柱的抗剪强度公式。为了提高模型的适用性,使用从可用文献中选择的47条混凝土短柱来验证该模型。结果表明,与ACI 318和中国混凝土规范的其他抗剪强度模型相比,所提出的方法可以更好地预测发生劈裂破坏的短柱的抗剪强度。

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