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首页> 外文期刊>Steel & Composite Structures: An International Journal >Parametric study using finite element simulation for low cycle fatigue behavior of end plate moment connection
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Parametric study using finite element simulation for low cycle fatigue behavior of end plate moment connection

机译:使用有限元模拟的参数研究端板力矩连接的低周疲劳行为

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The prediction of the low cycle fatigue (LCF) life of beam-column connections requires an LCF model that is developed using specific geometric information. The beam-column connection has several geometric variables, and changes in these variables must be taken into account to ensure sufficient robustness of the design. Previous research has verified that the finite element model (FEM) can be used to simulate LCF behavior at the end plate moment connection (EPMC). Three critical parameters, i.e., end plate thickness, beam flange thickness, and bolt distance, have been selected for this study to determine the geometric effects on LCF behavior. Seven FEMs for different geometries have been developed using these three critical parameters. The finite element analysis results have led to the development of a modified LCF model for the critical parameter groups.
机译:预测梁柱连接的低周疲劳(LCF)寿命需要使用特定几何信息开发的LCF模型。梁柱连接具有几个几何变量,必须考虑这些变量的变化以确保设计的足够鲁棒性。先前的研究已经证明,有限元模型(FEM)可用于模拟端板弯矩连接(EPMC)处的LCF行为。本研究选择了三个关键参数,即端板厚度,梁翼缘厚度和螺栓距离,以确定对LCF行为的几何影响。使用这三个关键参数,已经开发出了针对不同几何形状的七个FEM。有限元分析结果导致针对关键参数组的改进的LCF模型的开发。

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