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Experimental research on seismic behavior of plus -shaped columns reinforced with high-strength steel bars under cyclic loading

机译:高强钢筋加筋异形柱在反复荷载下抗震性能的试验研究

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摘要

500MPa steel bar is a new type of high-strength reinforcing bar applied in China. To investigate the feasibility of using this type of reinforcement in specially shaped column structure, six +-shaped column specimens varying in axial compression ratio and stirrup spacing were tested under cyclic loading. Behaviors in failure mode, shear crack width, bearing capacity, displacement ductility and energy dissipating capacity are studied to evaluate the seismic resistance performance of the columns. Test results show that 500 MPa steel bars can be effectively used as longitudinal reinforcement and provide more significant confinement to core concrete as transverse reinforcement. It is demonstrated by the observed results that expected oversize flexure-shear crack width can be prevented through an appropriate design procedure following the current building codes in China. Reducing stirrup spacing provides better performance in member ductility, crack behavior, cumulative damage and energy dissipation capacity, but has little influence on the bearing capacity; high axial load can offer advantages in bearing capacity, energy dissipating capacity and shear crack behavior, but reduce the member ductility. To predict the behavior of test specimens under cyclic loading, analytical model are implemented in program OpenSees using flexural fiber beam-column element with the consideration of the shear effect. Analytical results have an acceptable agreement with the test results.
机译:500MPa钢筋是我国应用的新型高强度钢筋。为了研究在特殊形状的圆柱结构中使用这种类型的钢筋的可行性,在循环载荷下测试了六个轴向压缩比和箍筋间距不同的+形圆柱试样。研究了破坏模式下的行为,剪切裂缝宽度,承载力,位移延性和耗能能力,以评估柱的抗震性能。试验结果表明,500 MPa的钢筋可以有效地用作纵向钢筋,并且可以将对核心混凝土的限制作用显着地作为横向钢筋。观测结果表明,按照中国现行的建筑规范,通过适当的设计程序可以防止预期的超大挠曲-剪切裂缝宽度。减小箍筋间距可提供更好的构件延展性,裂纹性能,累积损伤和能量耗散性能,但对承载力影响很小;高轴向载荷可在承载能力,耗能能力和剪切裂纹行为方面提供优势,但会降低构件的延展性。为了预测循环载荷下的试样性能,在OpenSees程序中使用挠性纤维梁柱单元并考虑了剪切效应,从而实现了分析模型。分析结果与测试结果具有可接受的一致性。

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