提出了一种基于力学转化模型的钢筋混凝土板柱节点抗冲切性能分析方法,该方法能够将传统弹性力学的研究问题用结构力学模型解决.通过OpenSees(Open System for Earthquake Engineering Simulation)计算平台进行建模,根据数值分析和试验...提出了一种基于力学转化模型的钢筋混凝土板柱节点抗冲切性能分析方法,该方法能够将传统弹性力学的研究问题用结构力学模型解决.通过OpenSees(Open System for Earthquake Engineering Simulation)计算平台进行建模,根据数值分析和试验结果的对比,确定和验证模型中的关键参数.结果表明,该数值模型能够很好模拟板柱节点的抗冲切性能,包括载荷-变形响应、刚度变化规律及变形分布规律等,为全面认识板柱节点的工作机理、受力特征及内力分布规律提供新的研究途径,同时为工程设计与实践提供理论指导.展开更多
This paper present an experimental study on the RC slab-column connections with nonrectangular columns, namely cross-shaped column, T-shaped column and L-shaped column. The punching shear deformation and strength char...This paper present an experimental study on the RC slab-column connections with nonrectangular columns, namely cross-shaped column, T-shaped column and L-shaped column. The punching shear deformation and strength characteristics of slab-column connections with nonrectangular columns under punching shear load are investigated. Nine specimens with the three kinds of nonrectangular columns and two reference specimens with square columns are tested. The tested ultimate loads, deformations, and failure modes of specimens are presented and discussed. Test results reveal that the punching shear strength and ductility of the connections with nonrectangular columns are higher than those of the corresponding connections with square columns, and also prove that the application of nonrectangular columns to flat-plate structure was feasible. Based on the test results, one method of calculating punching shear strength of connections with nonrectangular columns is proposed, which conforms with the current design practice of China. The test results on the punching shear strength are compared with the predictions of the formulas proposed by codes of several different countrie; and the predictions given by ACI code and China code are found to be conservative as the reinforcement ratio is increased.展开更多
文摘提出了一种基于力学转化模型的钢筋混凝土板柱节点抗冲切性能分析方法,该方法能够将传统弹性力学的研究问题用结构力学模型解决.通过OpenSees(Open System for Earthquake Engineering Simulation)计算平台进行建模,根据数值分析和试验结果的对比,确定和验证模型中的关键参数.结果表明,该数值模型能够很好模拟板柱节点的抗冲切性能,包括载荷-变形响应、刚度变化规律及变形分布规律等,为全面认识板柱节点的工作机理、受力特征及内力分布规律提供新的研究途径,同时为工程设计与实践提供理论指导.
文摘This paper present an experimental study on the RC slab-column connections with nonrectangular columns, namely cross-shaped column, T-shaped column and L-shaped column. The punching shear deformation and strength characteristics of slab-column connections with nonrectangular columns under punching shear load are investigated. Nine specimens with the three kinds of nonrectangular columns and two reference specimens with square columns are tested. The tested ultimate loads, deformations, and failure modes of specimens are presented and discussed. Test results reveal that the punching shear strength and ductility of the connections with nonrectangular columns are higher than those of the corresponding connections with square columns, and also prove that the application of nonrectangular columns to flat-plate structure was feasible. Based on the test results, one method of calculating punching shear strength of connections with nonrectangular columns is proposed, which conforms with the current design practice of China. The test results on the punching shear strength are compared with the predictions of the formulas proposed by codes of several different countrie; and the predictions given by ACI code and China code are found to be conservative as the reinforcement ratio is increased.