首页> 外文期刊>Journal of Constructional Steel Research >Cyclic behavior studies on I-section inverted V-braces and their gusset plate connections
【24h】

Cyclic behavior studies on I-section inverted V-braces and their gusset plate connections

机译:工字型倒V型支撑及其角撑板连接的循环行为研究

获取原文
获取原文并翻译 | 示例
           

摘要

Inverted V-braces and their central gusset plate connections are popular patterns of brace arrangements for special concentrically braced frames (SCBF). To improve the understanding of their seismic performances and promote their applications in seismic designs, the hysteretic behavior of nine I-section inverted V-braces and their gusset plate connections subject to inelastic cyclic loading is examined through experiments and analytical simulations. It is found that the clearance at the brace end on the gusset plate, the locations of the intersection point of bracing members, and the ratio of the free edge length to the gusset plate thickness are the key parameters. The loading capacities of braced frames show no decrease before the brace low-cycle fatigue fracture, but a longer plateau at a lower load level exists in the hysteretic loops. Although specimens with a linear clearance exhibit better seismic behaviors, a negative clearance is also acceptable as long as the gusset plate does not fracture prior to the braces. A brace intersection point with moderate eccentricity is preferable for its better behavior and its economical dimension of the gusset plate, but the brace point location in the gusset plate could induce out-of-plane deformations in the gusset plate and cause the system ductility to deteriorate. Based upon test results, a suggested limitation of the ratio of the free edge length to thickness for the gusset plates is presented.
机译:倒V形支撑及其中心角撑板连接是特殊的同心支撑框架(SCBF)的支撑布置的常用模式。为了提高对它们的抗震性能的了解并促进其在抗震设计中的应用,通过实验和分析模拟,研究了九个I形倒V形支架及其受非弹性循环荷载作用的角撑板连接的滞后行为。发现在角撑板的支撑端处的间隙,支撑构件的交点的位置以及自由边缘长度与角撑板的厚度之比是关键参数。在低周期支撑疲劳断裂之前,支撑框架的承载能力没有降低,但是在较低的载荷水平下,滞回环中存在更长的平稳期。尽管具有线性间隙的样品表现出更好的抗震性能,但只要角撑板在支撑之前不破裂,负间隙也是可以接受的。偏心度适中的撑杆交点是最佳选择,因为它具有更好的性能和角撑板的经济尺寸,但角撑板中的撑点位置可能会导致角撑板的面外变形并导致系统延展性降低。根据测试结果,提出了角撑板的自由边缘长度与厚度之比的建议限制。

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