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AN IMPROVED PROCEDURE FOR CAPACITY DESIGN OF VERTICAL BOUNDARY ELEMENTS IN STEEL PLATE SHEAR WALLS

机译:钢板剪力墙竖向边界单元承载力设计的改进程序

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Consistent with capacity design principles, the 2005 AISC Seismic Provisions require that the vertical and horizontal boundary elements of steel plate shear walls be designed to remain essentially elastic while the web plates yield under seismic loading. However, determination of the design loads for vertical boundary elements to reliably achieve capacity design is difficult and a reasonably accurate approximate procedure is needed. This paper presents such a procedure for determining those design loads for the vertical boundary elements of steel plate shear walls so that the desired component yielding sequence is achieved. The procedure combines an assumed plastic collapse mechanism with a linear model of a vertical boundary element to determine the maximum axial forces, shear forces, and moments for vertical boundary elements considering fully yielded web plates and horizontal boundary elements hinging at their ends.
机译:根据容量设计原则,2005年AISC地震规定要求将钢板剪力墙的垂直和水平边界元素设计为在地震荷载作用下腹板屈服时保持基本弹性。然而,确定垂直边界元件的设计载荷以可靠地实现能力设计是困难的,并且需要合理准确的近似程序。本文提出了一种确定钢板剪力墙垂直边界单元设计荷载的程序,从而实现了所需的构件屈服顺序。该程序将假定的塑性塌陷机制与垂直边界单元的线性模型结合起来,以确定最大的轴向力,剪切力和考虑到完全屈服的腹板和水平边界单元在其端部铰接的水平边界单元的弯矩。

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