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Seismic Performance of an Innovative Light-Frame Cold-Formed Steel Frame for Midrise Construction

机译:一种创新的轻型框架冷弯型钢框架的抗震性能

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This paper presents the method and results of a study whose objective was to investigate the seismic performance of a new light-frame cold-formed steel-frame system. The system includes floor trusses, open panels, V-braced panels, columns, and connections. To do this, a series of reversed-cyclic tests were conducted on subassemblies. The results of this experimental program provided insight into the behavior of the subassemblies under cyclic loading, which in turn provided key information for numerical modeling of the subassemblies and the whole system as well as failure mechanisms of the frame. Nonlinear time history analyses were performed using a new formulation for a 4-story frame using a suite of earthquake ground motions to demonstrate the behavior of a typical V-braced system in a moderate earthquake. Both test results and numerical analysis indicate that the system has good ductility as a result of the screwed plate connections between the light-gauge members and between the light-gauge members and square columns. The frame system performed very well at four stories making it a viable midrise construction option in seismic regions of the United States and around the world.
机译:本文介绍了研究的方法和结果,其目的是研究新型轻型框架冷弯型钢框架系统的抗震性能。该系统包括地板桁架,开放式面板,V型支撑面板,立柱和连接件。为此,对子装配体进行了一系列的反向循环测试。该实验程序的结果提供了对子组件在循环载荷下的行为的洞察力,从而为子组件和整个系统的数值建模以及框架的失效机理提供了关键信息。非线性时程分析是使用一套新的公式针对4层框架进行的,其中使用了一组地震地面运动来演示中等地震中典型的V型支撑系统的行为。测试结果和数值分析均表明,由于光规构件之间以及光规构件与方柱之间的螺纹板连接,该系统具有良好的延展性。框架系统在四个楼层上均表现出色,使其成为美国和世界地震地区可行的中层建筑选择。

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