首页> 外文期刊>Engineering Structures >Test and lower bound modeling of keyed shear connections in RC shear walls
【24h】

Test and lower bound modeling of keyed shear connections in RC shear walls

机译:RC剪力墙中键控剪力连接的测试和下界建模

获取原文
获取原文并翻译 | 示例

摘要

This paper presents an investigation into the ultimate behavior of a recently developed design for keyed shear connections. The influence of the key depth on the failure mode and ductility of the connection has been studied by push-off tests. The tests showed that connections with larger key indentations failed by complete key cut-off. In contrast, connections with smaller key indentations were more prone to suffer local crushing failure at the key corners. The local key corner crushing has an effect on the load-displacement response, which is relatively more ductile. In addition to the tests, the paper also presents lower bound modeling of the load carrying capacity of the connections. The main purpose of the lower bound model is to supplement an already published upper bound model of the same problem and thereby provide a more complete theoretical basis for practical design. The two models display the same overall tendencies although identical results are not possible to obtain, due to differences in the basic assumptions usually made for upper and lower bound analysis of connections. It is found that the test results, consistent with the extremum theorems of plasticity, are all lying within the gap between the upper and the lower bound solution. The obtained results finally lead to a discussion of how the two models can be used in practice. The primary merit of the upper bound model lies in its simplicity (a closed-form equation). On the other hand, the lower bound model provides safe results, but is more complicated to apply. It is therefore argued that the upper bound model may be used in cases, where calibration with tests has been carried out. The lower bound model should be applied in situations, where the design deviates significantly from the configurations of the available tests.
机译:本文介绍了最近开发的键控剪切连接设计的最终性能。通过推入试验研究了键深度对连接失败模式和延性的影响。测试表明,具有较大按键凹痕的连接由于完全切断按键而失败。相反,键凹痕较小的连接更容易在键角处遭受局部挤压失败。局部键角挤压会对载荷-位移响应产生影响,这相对更具延展性。除了测试之外,本文还介绍了连接的承载能力的下界建模。下界模型的主要目的是补充已经发布的相同问题的上界模型,从而为实际设计提供更完整的理论基础。这两个模型显示出相同的总体趋势,尽管由于通常对连接的上限和下限分析所做的基本假设不同,因此无法获得相同的结果。已发现,与可塑性极值定理一致的测试结果均位于上下限解之间的间隙内。最终获得的结果引发了关于如何在实践中使用这两种模型的讨论。上限模型的主要优点在于其简单性(闭式方程式)。另一方面,下限模型提供了安全的结果,但应用起来更加复杂。因此,有人认为,在已经进行了测试校准的情况下,可以使用上限模型。下限模型应用于设计与可用测试的配置有明显偏离的情况。

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