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Evolutionary structural optimization of steel gusset plates

机译:钢扣板的演化结构优化

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Evolutionary structural optimization is applied to determine the optimum shape of steel gusset plates subjected to axial forces. A number of different gusset plates used in various types of connections is considered for this purpose. The evolutionary structural optimization approach is employed to find the optimum shapes of a gusset plate used in these connections. The first example considers a gusset plate having two holes which are utilized in the connection of double angle carrying a tensile force. Within this example the effect of certain parameters in the evolutionary structural optimization process such as material removal ratio, mesh size and modeling of holes on the final shape is investigated. The gusset plates having three, four and five holes are also designed for optimal shape. Furthermore design examples include two rows of multiple holes as well as staggered holes and connections with multiple members. The final shapes obtained in the single member bolted connections are generally similar to those used in practice. However, they are lighter. Those shapes obtained for the multiple member connections and welded double angle connections are unpredictable. Although the shapes obtained in all the examples are lighter than the ones used in practice, they might be more expensive to produce. It is shown that the evolutionary structural optimization method has a potential in determining the optimum shape of gusset plates.
机译:应用进化结构优化来确定承受轴向力的角撑板的最佳形状。为此,考虑了在各种类型的连接中使用的许多不同的角撑板。采用进化结构优化方法来找到用于这些连接的角撑板的最佳形状。第一实例考虑具有两个孔的角撑板,该角板用于承载拉力的双角连接。在此示例中,研究了某些参数在演化结构优化过程中的影响,例如材料去除率,网格尺寸和孔的最终形状建模。还设计了具有三个,四个和五个孔的角撑板,以获得最佳形状。此外,设计示例还包括两排多个孔以及交错的孔以及与多个构件的连接。在单件螺栓连接中获得的最终形状通常与实际使用的形状相似。但是,它们更轻。对于多构件连接和焊接双角连接获得的形状是不可预测的。尽管在所有示例中获得的形状都比实际使用的形状更轻,但它们的生产成本可能更高。结果表明,演化结构优化方法具有确定角撑板最佳形状的潜力。

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