首页> 外文会议>Canadian Society for Civil Engineering annual conference >FINITE ELEMENT MODELLING AND ANALYSIS OF YIELDING STEEL SHEAR PANEL DEVICE FOR PASSIVE ENERGY DISSIPATION
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FINITE ELEMENT MODELLING AND ANALYSIS OF YIELDING STEEL SHEAR PANEL DEVICE FOR PASSIVE ENERGY DISSIPATION

机译:被动能耗的屈服型钢剪板装置有限元建模与分析

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Yielding Shear Panel Device (YSPD) has recently been proposed for steel braced frames to absorb seismic energy during earthquakes. This system consists of short segment of a square hollow section (SHS) with a steel diaphragm plate welded inside it. YSPDs are attached to chevron braced frame using bolted-connection to ensure easy installation and replacement. Research on YSPDs is still in the initial stage and a significant amount of study is needed before they can be accepted by the engineering community. This paper presents development of a finite element model to study the behavior of YSPDs. The finite element model includes both material and geometric non-linearity. The paper describes the validation of the finite element model using the results from an experimental program. Excellent correlation between the test results and the finite element analysis results is observed. The validated FE model is used to conduct a detailed parametric study considering parameters such as diaphragm plate thickness, SHS section thickness and shear panel aspect ratio.
机译:最近提出了屈服剪力板装置(YSPD)用于钢制支撑框架,以吸收地震时的地震能量。该系统由方形空心型材(SHS)的短段组成,内部焊接有钢制隔板。 YSPD通过螺栓连接固定在人字形支撑框架上,以确保易于安装和更换。对YSPD的研究仍处于初期阶段,需要大量研究才能被工程界接受。本文介绍了一种有限元模型的开发,以研究YSPD的行为。有限元模型包括材料非线性和几何非线性。本文使用实验程序的结果描述了有限元模型的验证。观察到测试结果与有限元分析结果之间具有极好的相关性。经过验证的有限元模型用于进行详细的参数研究,其中考虑了诸如隔板厚度,SHS截面厚度和剪力板纵横比之类的参数。

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