首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Seismic design and shake table tests of a steel post-tensioned self-centering moment frame with a slab accommodating frame expansion
【24h】

Seismic design and shake table tests of a steel post-tensioned self-centering moment frame with a slab accommodating frame expansion

机译:带平板可伸缩框架的钢制后张自定心矩框架的抗震设计和振动台试验

获取原文
获取原文并翻译 | 示例

摘要

Post-tensioned (PT) self-centering moment frames were developed as an alternative to welded moment-resisting frames (MRFs). Lateral deformation of a PT frame opens gaps between beams and columns. The use of a composite slab in welded MRFs limits the opening of gaps at the beam-to-column interfaces but cannot be adopted in PT self-centering frames. In this study, a sliding slab is used to minimize restraints to the expansion of the PT frame. A composite slab is rigidly connected to the beams in a single bay of the PT frame. A sliding device is installed between the floor beams and the beams in other bays, wherever the slab is allowed to slide. Many shaking table tests were conducted on a reduced-scale, two-by-two bay one-story specimen, which comprised one PT frame and two gravitational frames (GFs). The PT frame and GFs were self-centering throughout the tests, responding in phase with only minor differences in peak drifts that were caused by the expansion of the PT frame. When the specimen was excited by the 1999 Chi-Chi earthquake with a peak ground acceleration of 1.87g, the maximum interstory drift was 7.2% and the maximum lateral force was 270 kN, equal to 2.2 times the yield force of the specimen. Buckling of the beam bottom flange was observed near the column face, and the initial post-tensioning force in the columns and beams decreased by 50 and 22%, respectively. However, the specimen remained self-centering and its residual drift was 0.01%.
机译:后张式(PT)自定心弯矩框架是焊接抗弯矩框架(MRF)的替代产品。 PT框架的横向变形打开了梁和柱之间的间隙。在焊接的MRF中使用复合板限制了梁到柱界面处的缝隙开口,但不能用于PT自定心框架中。在这项研究中,使用一块滑动板来最小化对PT框架膨胀的约束。复合板牢固地连接到PT框架的单个隔间中的梁上。在地板允许滑动的任何位置,地板梁与其他隔间的梁之间都装有一个滑动装置。许多振动台测试是在一个缩小的,二乘二间隔的一层标本上进行的,该标本包括一个PT框架和两个重力框架(GF)。 PT框架和GF在整个测试过程中都是自对中的,它们在相位上的响应只是由PT框架的膨胀引起的峰漂移的微小差异。当样本在1999年的Chi-Chi地震中以1.87g的峰值地面加速度被激发时,最大层间漂移为7.2%,最大横向力为270 kN,等于样本屈服力的2.2倍。在柱面附近观察到梁底部法兰的屈曲,并且柱和梁中的初始后张拉力分别降低了50%和22%。但是,样品仍保持自定中心,其残余漂移为0.01%。

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