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Finite Element Modeling and Validation of Steel Sheathed Cold-formed Steel Framed Shear Walls

机译:钢护套冷成型钢框架剪力墙有限元建模与验证

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The objective of this paper is to validate the concept of utilizing a truss-element based finite element model for capturing the in-plane cyclic response of steel sheathed cold-formed steel (CFS) framed shear wall. The model is developed within the OpenSees finite element platform. Steel sheathed CFS shear walls show shear buckling of their sheathing as a tension field develops. This inelastic behavior of the shear walls is replicated by using the Pinching4 material for truss elements acting along the tension field. Importantly, the model employs beam-column elements for framing members, rotational springs for representing frame stiffness and vertical springs for modelling hold-downs. The wall models were calibrated using experimental data available for 0.030-in. and 0.033-in. steel sheet sheathed shear walls with 2:1 and 4:1 aspect ratios and 6-in., 4-in. and 2-in. fastener spacing at panel edges. The specimens were subjected to symmetric reverse cyclic displacement-controlled loading using the CUREE protocol. Comparison amongst the experimental and numerical models demonstrate a high degree of accuracy in the estimated shear strength and hysteretic response of the shear walls and as such has the potential to be an important building block towards modeling full structural systems constructed of cold-formed steel framing.
机译:本文的目的是验证利用基于桁架元件的有限元模型的概念,用于捕获钢护套冷成型钢(CFS)框架剪力墙的平面内循环响应。该模型是在Opensees有限元平台内开发的。钢护套CFS剪切墙显示其护套作为张力场的剪切屈曲。通过使用用于沿着张力场的桁架元件的桁架元件来复制剪切壁的这种无弹性行为。重要的是,该模型采用束柱元件用于构筑构件,用于表示框架刚度和垂直弹簧的旋转弹簧,用于造型阻力。使用0.030英寸的实验数据校准墙面模型。和0.033英寸。钢板护套剪力墙,具有2:1和4:1纵横比和6英寸,4英寸。和2英寸。在面板边缘处紧固间隔。使用CUREE协议对称反向循环位移控制负载进行对称的反向循环位移控制。实验和数值模型之间的比较在剪力墙的估计剪切强度和滞后响应中展示了高度的精度,并且因此具有朝向建造由冷成型钢框架构成的全结构系统的重要构建块。

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