首页> 外文期刊>Latin American Journal of Solids and Structures >Study About Buckling Phenomenon in Perforated Thin Steel Plates Employing Computational Modeling and Constructal Design Method
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Study About Buckling Phenomenon in Perforated Thin Steel Plates Employing Computational Modeling and Constructal Design Method

机译:计算模型与构造设计方法研究带孔薄钢板屈曲现象

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Abstract Perforated steel thin plates are commonly used in structural engineering. Due to their geometric characteristics, these panels can suffer the undesired buckling phenomenon. In this context, the present work associates the computational modeling and the constructal design method to evaluate the influence of the geometric configuration in the plate buckling behavior, using the exhaustive search method to determine which geometries conduct to superior mechanical behavior. To do so, numerical models are employed to solve elastic and elasto-plastic buckling of plates having a centered perforation. Different hole types (longitudinal oblong, transversal oblong, elliptical, rectangular, diamond, longitudinal hexagonal, or transversal hexagonal) with different shapes (variation of characteristics dimensions of each hole type) are analyzed. Limit curves to avoid buckling were obtained, as well as the definition of the geometries that can improve up to 107% the plate performance.
机译:摘要多孔钢薄板常用于结构工程中。由于它们的几何特性,这些面板会遭受不希望的屈曲现象。在这种情况下,本工作将计算模型和结构设计方法联系起来,以评估几何构型对板屈曲行为的影响,并使用详尽的搜索方法来确定哪些几何形状表现出优异的机械性能。为此,采用数值模型来解决具有中心穿孔的板的弹性和弹塑性屈曲。分析具有不同形状(每种孔类型的特征尺寸的变化)的不同孔类型(纵向长方形,横向长方形,椭圆形,矩形,菱形,纵向六边形或横向六边形)。获得了避免弯曲的极限曲线,以及可以提高高达107%的印版性能的几何形状定义。

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