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Development and Testing of an Alternative Dissipative Posttensioned Rocking Timber Wall with Boundary Columns

机译:具有边界柱的替代耗散后张力摇摆木墙的开发和测试

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摘要

The unbonded posttensioned rocking and dissipative technology was first developed as the main outcome of the PREcast seismic structural systems (PRESSS) Program in the United States. After the first developments and significant refinement, the technology was extended to steel and, more recently, timber structures. The timber version, referred to as prestressed laminated (Pres-Lam) system can be either implemented for timber walls (single or coupled) or frames or a combination of the above, with unbonded posttensioning and supplemental dissipation devices. In unbonded posttensioned dissipative wall systems a combination of recentering capacity and energy dissipation leads to a controlled rocking mechanism, which develops a gap opening at the wall base. This generates an uplift displacement that is transferred to the floor diaphragm. This vertical displacement incompatibility can represent a potential issue if the connection detailing between floor and lateral resisting system is not designed properly. The same issue can be mitigated by adopting an alternative configuration of the rocking/dissipative wall system, based on the use of a column-wall-column posttensioned connection. This concept, originally proposed for precast concrete walls and referred to as prestressed wall with end column (PreWEC), has been extended and adapted to posttensioned timber structures and validated through experimental testing. The paper presents the design, detailing, and experimental testing of a two-thirds scale wall specimen of this alternative configuration. Different wall configurations are considered in terms of posttensioning initial force as well as dissipation devices layout. The experimental results confirm the excellent seismic performance of the system with the possibility to adopt multiple alternative configurations. (C) 2015 American Society of Civil Engineers.
机译:作为美国PREcast地震结构系统(PRESSS)计划的主要成果,首先开发了无粘结的后张紧摇摆和耗散技术。经过最初的发展和重大改进,该技术已扩展到钢结构,最近又扩展到木材结构。木材版本称为预应力层压(Pres-Lam)系统,可用于木墙(单层或联结)或框架或上述的组合,并具有无粘结的后张紧力和补充耗散装置。在无粘结的后张力耗散墙系统中,集中容量和能量耗散的结合导致受控的摇摆机制,该机制在墙壁基础处形成了一个缝隙开口。这将产生一个上升位移,该位移被传递到地板隔膜上。如果地板和侧向阻力系统之间的连接细节设计不当,则这种垂直位移不兼容可能会带来潜在的问题。通过采用基于柱壁-柱-柱后张连接的摇摆/耗散壁系统的替代配置,可以缓解相同的问题。此概念最初是针对预制混凝土墙提出的,被称为带端柱的预应力墙(PreWEC),现已扩展并适用于后张拉的木结构,并通过实验测试进行了验证。本文介绍了这种替代配置的三分之二比例墙样本的设计,详细设计和实验测试。在后张紧初始力以及耗散装置的布局方面考虑了不同的壁构造。实验结果证实了该系统出色的抗震性能,并可能采用多种替代配置。 (C)2015年美国土木工程师学会。

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  • 来源
    《Journal of structural engineering》 |2016年第4期|E4015011.1-E4015011.12|共12页
  • 作者单位

    Univ Canterbury, Dept Civil & Nat Resources Engn, Private Bag 8400, Christchurch 8140, New Zealand;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Private Bag 8400, Christchurch 8140, New Zealand;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Private Bag 8400, Christchurch 8140, New Zealand;

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