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Earthquake Simulator Testing of Metal Building Systems

机译:金属建筑系统的地震模拟器测试

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Metal Building Systems (MBS) make up a substantial portion of non-residential, low-rise construction in the U.S. Given their wide spread use, it is desirable to understand their performance during a seismic event. Previous pseudo-static, cyclic testing indicates an absence of ductility in these systems. This lack of ductility arises from the inherent design concepts behind using web-tapered frames with no flange or web compactness limits, causing buckling limit states to govern the strength of the frames. In light of the lack of ductility, it is obvious that the current practice of designing MBS moment frames as Ordinary Moment Frame (OMF) systems, with R-3.5, is inappropriate. Also, simple analytical studies suggest that MBS supporting large masses, such as concrete or masonry exterior cladding or interior mezzanines, may be particularly vulnerable to the lack of ductility. For these reasons, it is desirable to develop a safe, economic, and reliable design procedure for MBS. Earthquake simulation testing of MBS has been performed to provide test data to start this development. Three full-scale MBS specimens have been tested on the NEES/UCSD Large High Performance Outdoor Shake Table. Specimen 1 consisted of a single story MBS frame with metal side wall panels to represent the majority of MBS buildings. Specimen 2 was similar to the first, except with heavy concrete sidewall panels. Specimen 3 consisted of a MBS frame built with compact flanges, a mezzanine attached to one sidewall, and a concrete wall attached to the other. Results from each battery of tests will be presented in this paper.
机译:金属建筑系统(MBS)构成了美国非住宅,低层建筑的重要组成部分。鉴于其广泛的用途,希望了解其在地震事件中的性能。先前的伪静态循环测试表明这些系统缺乏延展性。这种延展性的缺乏是由使用无凸缘或腹板致密度限制的腹板锥形框架背后的固有设计概念引起的,从而导致屈曲极限状态控制框架的强度。鉴于缺乏延展性,显然将MBS矩框架设计为具有R-3.5的普通矩框架(OMF)系统的当前做法是不适当的。同样,简单的分析研究表明,支撑大型物体的MBS,例如混凝土或砖石外墙或内部夹层墙,可能特别容易受到延展性的影响。由于这些原因,期望开发一种用于MBS的安全,经济和可靠的设计程序。 MBS的地震模拟测试已经执行,以提供测试数据来开始这一开发。在NEES / UCSD大型高性能户外振动台上测试了三个满量程的MBS标本。标本1由单层MBS框架和金属侧壁板组成,代表了大多数MBS建筑物。试样2与第一个试样相似,除了带有沉重的混凝土侧壁板。样品3由MBS框架组成,该框架具有紧凑的法兰,夹层固定在一个侧壁上,混凝土墙壁连接在另一侧上。每组测试的结果将在本文中介绍。

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