首页> 外文期刊>Engineering Structures >Pseudo-plastic moment resistance of continuous beams with cold-formed sigma sections at internal supports: An experimental study
【24h】

Pseudo-plastic moment resistance of continuous beams with cold-formed sigma sections at internal supports: An experimental study

机译:内部支撑具有冷弯西格玛截面的连续梁的假塑性抗弯矩:一项实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

Most thin-walled sections exhibit elastic-softening moment-rotation characteristics in bending, and therefore the elastic analysis/design method is usually recommended for continuous beams with this type of section. A more economical design approach, the pseudo-plastic design method, has been proposed to allow for the development of moment redistribution in the system. To facilitate this design method, pseudo-plastic moment resistance (PPMR) at the internal supports is required. This paper reports an experimental study of the structural performance of continuous beams with cold-formed sigma sections near the internal supports, based on which the PPMR was derived. To this end, only the part of the beam carrying a hogging moment near one of the internal supports was specifically studied. It was represented with a simply supported beam subjected to a central point load. The simple supports were placed at inflexion points and the concentrated load was a representation of the reaction. Research results include the behaviours of initial buckling, post-buckling and post-failure of sigma beams near the internal supports, the ultimate moment resistance under combined bending and shear, and the moment-rotation relationship. Four typical localised collapse patterns have been established and defined. The results of ultimate moment resistance obtained were compared with the theoretical predictions by using two codified methods, namely, the effective width method (EWM) and the direct strength method (DSM). Lastly, a semi-empirical approach has been proposed to find the pseudo-plastic moment resistance at the internal supports.
机译:大多数薄壁截面在弯曲时都表现出弹性软化的力矩旋转特性,因此通常建议对这种截面的连续梁采用弹性分析/设计方法。已经提出了一种更经济的设计方法,即假塑性设计方法,以允许在系统中开发力矩重新分配。为了简化此设计方法,内部支撑处需要使用假塑性抗弯矩(PPMR)。本文对内部支撑附近的冷弯sigma截面连续梁的结构性能进行了实验研究,由此得出了PPMR。为此,仅专门研究了梁的在内部支撑件之一附近承载弯矩的部分。它用承受中心点载荷的简支梁表示。将简单的支撑物放置在拐点处,集中的负荷代表了反应。研究结果包括内部支撑附近的sigma梁的初始屈曲,后屈曲和失效后的行为,在组合弯曲和剪切作用下的极限弯矩阻力以及弯矩-旋转关系。已经建立并定义了四种典型的局部坍塌模式。使用两种编码方法,即有效宽度法(EWM)和直接强度法(DSM),将获得的极限抗弯强度结果与理论预测值进行了比较。最后,提出了一种半经验方法来寻找内部支撑处的拟塑性矩阻力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号