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SEISMIC RESISTANCE OF RC BENT CAPS IN ELEVATED MASS TRANSIT STRUCTURES

机译:RC弯曲帽在高升力结构中的抗震性能

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This paper presents a study of the seismic resistance of two reinforced concrete cap beams in existing elevated guideway structures constructed in the 1960's. One beam has a regular configuration and the other has an irregular configuration. For each beaM type, a 1/2-scale model was designed, constructed, and tested. The irregular beam tested had a larger depth and a higher quantity of main longitudinal steel. While the regular beam had spiral confinement extending into the beam-to-column joint, the irregular beam did not. The beams were subjected to simultaneous bending, shear, and torsion in the tests, with the torsion induced by the vertical eccentricity of the horizontal load exerted at the top face of the beams. The test results underscore the importance of confinement steel in the beam-to- column joint of a cap beam and the critical role of the longitudinal reinforcement in the beams for torsional resistance. A numerical parametric study has been conducted with nonlinear finite element and strut-&-tie models, which have been validated with the experimental results. The study has indicated that the seismic load resistance of a cap beam can decrease with a reduced gravity load, which is an important consideration for design..
机译:本文介绍了在1960年代建造的现有升高导轨结构中两种钢筋混凝土帽梁的地震抗性的研究。一个光束具有常规配置,另一根具有不规则的配置。对于每个光束类型,设计,构造和测试了1/2级模型。测试的不规则光束具有较大的深度和较高量的主要纵向钢。虽然常规光束有螺旋限制延伸到光束到柱接头中,但不规则的光束没有。在测试中,将光束进行同时弯曲,剪切和扭转,通过施加在梁的顶面上施加的水平载荷的垂直偏心引起的扭转。测试结果强调了盖帽光束梁与梁柱接头中限制钢的重要性以及纵向加固在扭转抗梁中的纵向增强的关键作用。使用非线性有限元和支柱&型型模型进行了数值参数研究,该模型已被实验结果验证。该研究表明,帽梁的抗震载荷电阻可随着重力负荷减小而减小,这是设计的重要考虑因素。

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