首页> 外文期刊>Journal of structural engineering >Hysteretic Performance of Self-Centering Glulam Beam-to-Column Connections
【24h】

Hysteretic Performance of Self-Centering Glulam Beam-to-Column Connections

机译:自定心胶合梁到柱连接的滞后性能

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper investigates the hysteretic performance of self-centering beam-to-column connections for glulam structures. Such connections incorporate a posttensioned high-strength steel strand to provide recentering capability, and an energy dissipation device (a special steel cap or a pair of steel angles) was installed to increase shear resistance and provide energy dissipation. Moreover, disc springs were installed at the anchor of the steel strand to reduce the loss of pretension force. Seven full-scale specimens with different connection layouts were designed for a series of cyclic loading tests. The observed failure modes are reported, and the hysteretic moment-rotation responses of the specimens are evaluated. It was noted that due to the installation of the energy dissipation device, both the moment-resisting capacity and rotational stiffness of the specimen increased, but larger residual deformation was observed because plastic deformation in the steel components was more difficult to fully recover. The variation in pretension force in the steel strand was monitored. The monitoring data indicated that disc springs were capable of eliminating pretension force loss in the steel strand under the normal service condition (i.e.,indoor environment with varied humidity/temperature). However, during the cycling loading tests, the specimens with disc springs showed very similar pretension force loss behavior to the specimens without disc springs, indicating that disc springs failed to prevent pretension force loss in the steel strand caused by plastic wood embedding under large rotational deformation. Furthermore, a nonlinear numerical model was developed for the self-centering connections, and numerical results showed that the model was capable of providing good predictions in terms of moment-resisting capacity under various levels of rotational deformation. The presented experimental and numerical research aims to assess the hysteretic behavior of glulam self-centering connections, which supports the development of innovative timber connections with enhanced seismic performance.
机译:本文研究了胶合木结构的自定心梁到柱连接的滞后性能。此类连接采用了后张紧的高强度钢绞线来提供调心能力,并安装了能量消散装置(特殊的钢盖或一对钢角)以增加抗剪强度并提供能量消散。此外,在钢绞线的锚固件处安装了碟形弹簧,以减少预应力的损失。设计了七个具有不同连接布局的满量程标本,用于一系列循环载荷测试。报告观察到的破坏模式,并评估样品的滞后力矩旋转响应。注意到由于安装了能量消散装置,样品的抗力矩能力和旋转刚度都增加了,但是观察到较大的残余变形,因为钢构件中的塑性变形更难于完全恢复。监测钢绞线中预紧力的变化。监测数据表明,在正常使用条件下(即,湿度/温度变化的室内环境),碟形弹簧能够消除钢绞线上的预应力损失。然而,在循环载荷试验中,带有碟形弹簧的试样的预应力损失行为与不带碟形弹簧的试样非常相似,这表明碟形弹簧无法防止在大的旋转变形下嵌入塑料木引起的钢绞线中的预应力损失。 。此外,建立了用于自定心连接的非线性数值模型,数值结果表明,该模型能够在各种旋转变形水平下的抗弯矩能力方面提供良好的预测。提出的实验和数值研究旨在评估胶合木自对中连接的滞后行为,这支持开发具有增强抗震性能的新型木材连接。

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