An BESO Approach for Optimal Retrofit Design of Steel Rectangular-Hollow-Section Columns Supporting Crane Loads

被引:4
作者
Su, Rut [1 ]
Tangaramvong, Sawekchai [1 ]
Van, Thu Huynh [1 ]
机构
[1] Chulalongkorn Univ, Fac Engn, Ctr Excellence Appl Mech & Struct, Dept Civil Engn, Bangkok 10330, Thailand
关键词
hollow steel column; retrofit; topology optimization; local bucking; elastoplastic materials; stress intensity; EVOLUTIONARY TOPOLOGY OPTIMIZATION; BOX-COLUMN; CONTINUUM STRUCTURES; RELAXATION; ESO; CONNECTIONS; STRENGTH; JOINTS;
D O I
10.3390/buildings13020328
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this paper, we propose a cost-effective optimal-topology retrofitting technique for hollow-steel-section columns to sufficiently support industrial running cranes. A so-called bi-directional evolutionary structural optimization (BESO) method was encoded within the MATLAB modeling framework, with a direct interface with an ANSYS commercial finite-element analysis program, to determine the optimal topology of double external steel plates connected to columns in a 3D space. For the initial ground structure, we have adopted standard uniform double U-shaped external stiffener plates located at the top and bottom flange layers of an I-beam to box-column connection (IBBC) area. The influences of inelastic materials and the incorporated nonlinear geometry can effectively describe the premature (local buckling) failures of the columns in an IBBC area. The applications of the proposed optimal-topology BESO-based stiffening method are illustrated through the retrofitting of three hollow-steel-section columns, characterized by non-slender and slender compression sections. Some concluding remarks are provided on the pre- and post-retrofitted responses of the columns, with the results showing both the accuracy and robustness of the proposed external stiffening schemes.
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页数:19
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