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Performance of Screen Grid Insulating Concrete Form Walls under Combined In-Plane Vertical and Lateral Loads

机译:在平面内垂直和横向载荷组合的屏幕网格绝缘混凝土形成壁的性能

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Insulating Concrete Forms (ICF) walls generally comprise two layers of Expanded Polystyrene (EPS), steel reinforcement is placed in the center between the two layers and concrete is poured to fill the gap between those two layers. ICF's have many advantages over traditional methods of wall construction such as reduced construction time, noise reduction, strength enhancement, energy efficiency, and compatibility with any inside or outside surface finish. The focus of this study is the Screen Grid ICF wall system consisting of a number of beams and columns forming a concrete mesh. The performance of ICF wall systems under lateral loads simulating seismic effect is experimentally evaluated in this paper. This work addresses the effect of the different design parameters on the wall behavior under seismic simulated loads. This includes different steel reinforcement ratio, various reinforcement distribution, wall aspect ratios, different openings sizes for windows and doors, as well as different spacing of the grid elements of the screen grid wall. Ten full scale wall specimens were tested where the effects of the various parameters on wall behavior in terms of lateral load capacity, lateral displacement, and modes of failure are presented. The test results are stored to be used for further analysis and calibration of numerical models developed for this study.
机译:绝缘混凝土模板(ICF)的壁通常包括膨胀聚苯乙烯(EPS),钢筋被放置在两个层与混凝土之间的中心的两层倾填补这些两个层之间的间隙。 ICF的具有优于壁结构的传统方法的许多优点,如减少施工时间,降低噪声,强度提高,能效,并兼容任何内部或外部的表面光洁度。本研究的焦点是由多个梁和柱形成混凝土网格的屏幕网格ICF墙系统。 ICF墙系统的模拟地震作用横向负载下的性能在本文中是通过实验评估。这项工作解决了地震模拟荷载作用下墙的行为不同的设计参数的影响。这包括不同的钢筋比率,各种加强分布壁的纵横比,不同的开口尺寸为门窗,以及屏栅壁的网格元件的不同间距。十满刻度壁试样进行了测试,其中上壁行为的各种参数中的横向负载能力,横向位移,和失败的模式方面的影响被呈现。测试结果存储到用于进一步分析和本研究建立数字模型的校准。

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