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首页> 外文期刊>Journal of structural engineering >Performance of Steel Energy Dissipators Connected to Cross-Laminated Timber Wall Panels Subjected to Tension and Cyclic Loading
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Performance of Steel Energy Dissipators Connected to Cross-Laminated Timber Wall Panels Subjected to Tension and Cyclic Loading

机译:钢制耗能器与交叉层压木材墙板的连接性能,承受拉力和循环载荷

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This paper presents a new alternative energy dissipation solution to be used with cross-laminated timber (CLT) self-centering walls. CLT is a relatively new building product in North America and could potentially be used for high-rise construction. The development of high-performance seismic design solutions is necessary to encourage innovative structures and the design of these structures to new heights. The objective of this paper is to propose a wall-to-floor connection system that is easy to install and replace (structural fuse) after the occurrence of a large damaging event. The proposed energy dissipators are fabricated following concepts used in developing steel buckling restrained steel braces (BRB), having a milled portion, which is designed to yield and is enclosed within a grouted steel pipe. The connection system is investigated experimentally through a test sequence of displacement-controlled cycles based on a modified version of the test method developed by the American Concrete Institute (ACI) to facilitate development of special precast systems (ACI T1.1-01 Acceptance Criteria for Moment Frames Based on Structural Testing). Digital Image Correlation (DIC) was used to analyze strain behavior of the milled portion, as well as track movement of the panels during quasi-static uniaxial and cyclic testing. The results show the yield behavior and energy dissipation properties of the connection system. Damage was focused primarily in the energy dissipators, with negligible deformation and damage to the CLT panels and connections. (C) 2015 American Society of Civil Engineers.
机译:本文提出了一种新的替代能源消散解决方案,该解决方案可用于交叉层压木材(CLT)自定心墙。 CLT是北美相对较新的建筑产品,有可能用于高层建筑。高性能抗震设计解决方案的开发对于鼓励创新结构以及将这些结构的设计提高到新的高度是必要的。本文的目的是提出一种墙到地板的连接系统,该系统在发生重大破坏事件后易于安装和更换(结构保险丝)。拟议的消能器是根据用于开发具有屈曲部分的钢屈曲约束钢支架(BRB)的概念制造的,该铣削部分旨在屈服并封闭在灌浆钢管内。根据美国混凝土协会(ACI)开发的测试方法的改进版本,通过位移控制周期的测试顺序对连接系统进行了实验研究,以促进特殊预制系统的开发(ACI T1.1-01验收标准基于结构测试的矩框架)。数字图像关联(DIC)用于分析铣削部分的应变行为,以及在准静态单轴和循环测试过程中面板的轨道运动。结果显示了连接系统的屈服性能和能量耗散特性。损坏主要集中在消能器上,对CLT面板和连接的变形和损坏可忽略不计。 (C)2015年美国土木工程师学会。

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