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Mathematical modelling of yielding shear panel device

机译:屈服剪切板装置的数学建模

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Passive control devices are used in structures to dissipate seismic energy with a view to minimise damages to the major structural components. A relatively new device, yielding shear panel device (YSPD), to exploit the shear deformation of thin metal plates to absorb energy has recently been developed. YSPD is formed by welding a thin steel plate within a steel square hollow section (SHS) and its behaviour is determined by complex interactions among the thin diaphragm plate, the surrounding SHS and the boundary conditions. Available experimental results show that YSPD produces nonlinear pinching hysteretic force-displacement response when subjected to cyclic loading. This paper proposes a mathematical model to predict the hysteretic response using easily available parameters, i.e. the geometry of the YSPD and the properties of the material. Results obtained from the verified finite element (FE) models are used to calibrate the proposed models, which should facilitate the full scale modelling of building frames retrofitted with YSPD.
机译:被动控制装置用于结构中以消散地震能量,以最大程度地减少对主要结构部件的损坏。最近已经开发了一种相对较新的设备,即屈服剪切板设备(YSPD),该设备可以利用薄金属板的剪切变形来吸收能量。 YSPD是通过在方形钢空心截面(SHS)内焊接薄钢板而形成的,其行为取决于薄隔板,周围SHS和边界条件之间的复杂相互作用。可用的实验结果表明,YSPD在承受周期性载荷时会产生非线性收缩滞后力-位移响应。本文提出了一个数学模型,以使用容易获得的参数(即YSPD的几何形状和材料的特性)预测滞后响应。从验证的有限元(FE)模型获得的结果用于校准建议的模型,这应有助于对使用YSPD改装的建筑框架进行全面建模。

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