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Performance of gypsum sheathed CFS panels under combined lateral and gravity loading

机译:组合横向和重力负荷下石膏护套CFS面板的性能

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This paper investigates the performance of gypsum sheathed cold-formed steel (CFS) shear wall panels under combined action of lateral and gravity loading. The influence of gravity load on the lateral performance of the wall panels is experimentally evaluated through two scenarios of service and design levels. For this purpose, a total of eight full-scale one-side sheathed CFS panels, with two different field screw spacings as well as single and double section chord stud conditions, are considered for the experimental program. Based on the test results. a discussion on different failure modes, load-displacement relationships, maximum shear capacity, maximum displacement at failure, stiffness and energy absorption of the wall panels is presented. The test results are also employed to evaluate the response modification factor (R factor) of the wall panels using two different methods. The results indicate that the wall panels under gravity load at design level can provide higher shear strength, energy absorption and stiffness, but lower ductility compared to wall panels under service gravity load. In addition, the effect of increasing gravity load is more significant when double-section chord is employed for the specimens. The values of the response modification factor also indicate that the method of measuring R factor can relatively affect the results. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文研究了石膏护套冷成型钢(CFS)剪切壁板在横向和重力荷载作用下的性能。通过两种服务和设计水平进行实验评估重力负荷对墙板横向性能的影响。为此目的,实验程序考虑了总共八个全尺寸的一侧护套CFS面板,具有两种不同的现场螺钉间距以及单个和双部分和双部分和双剖面螺柱条件。基于测试结果。介绍了不同故障模式,负载 - 位移关系,最大剪切容量,故障时最大位移,壁板的刚度和能量吸收的最大位移。测试结果也用于使用两种不同方法评估墙板的响应改性因子(R因子)。结果表明,在设计水平下的重力负载下的壁板可以提供更高的剪切强度,能量吸收和刚度,而是与壁板相比的延展性在使用的墙板下进行的墙板。另外,当对样品采用双段弦时,增加重力载荷的效果更为显着。响应修改因子的值还表明测量R因子的方法可以相对影响结果。 (c)2020 elestvier有限公司保留所有权利。

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