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Nonlinear behavior of code-designed reinforced concrete concentric braced frames under lateral loading

机译:规范设计的钢筋混凝土同心支撑框架在侧向荷载作用下的非线性行为

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In this paper the authors summarize the results of a study devoted to evaluate, using static nonlinear analyses, the behavior of low to medium rise ductile moment-resisting reinforced concrete concentric braced frame structures (RC-MRCBFs) using chevron steel bracing. RC-MRCBFs were assumed to be located in soft soil conditions in Mexico City and were designed using a capacity design methodology adapted to the general requirements of the seismic, reinforced concrete and steel guidelines of Mexico's Federal District Code (MFDC-04). From the results obtained in this study it is possible to conclude that the capacity design methodology used by the authors is successful to design low and medium rise ductile RC-MRCBFs when the columns of the moment frames resist at least 50% of the total seismic shear force, supporting with numerical evidence the proposed strength balance established in MFDC-04. However, there is a need to improve current guidelines in MFDC-04 in order to warrant ductile behavior for this structural system and to attain the expected collapse mechanism of a strong column-weak beam-weaker brace, especially for slender buildings, a task that requires further research studies.
机译:在本文中,作者总结了一项研究结果,该研究致力于使用静态非线性分析评估使用人字形钢支撑的中低层延性抗弯矩钢筋混凝土同心支撑框架结构(RC-MRCBF)的性能。假定RC-MRCBF位于墨西哥城的软土条件下,并使用能力设计方法进行了设计,这些方法适应了墨西哥联邦区法典(MFDC-04)的抗震,钢筋混凝土和钢材指南的一般要求。从这项研究中获得的结果,可以得出结论,当弯矩框架柱承受总地震剪切力的至少50%时,作者使用的能力设计方法成功地设计了中低延性的RC-MRCBF。力,并以数字证据支持MFDC-04中建议的强度平衡。但是,有必要改进MFDC-04中的现行准则,以确保该结构系统具有延性,并实现预期的坚固的弱柱状梁弱支撑的塌陷机制,特别是对于细长的建筑物,这一任务需要进一步的研究。

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