首页> 外文会议>10th International Symposium on Tubular Structures; Sep 18-20, 2003; Madrid, Spain >Seismic design and ductility issues in concrete-filled steel tubular structures
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Seismic design and ductility issues in concrete-filled steel tubular structures

机译:钢管混凝土结构的抗震设计和延性问题

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This paper deals with seismic design and ductility issues in concrete-filled steel tubular structures, such as columns supporting highway bridge superstructures. The basic characteristics of the thin-walled steel tubular structures are noted and the importance of concrete fill in improving strength and ductility capacity of such structures is explained. A seismic design method for ultimate strength and ductility evaluation of concrete-filled, thin-walled, steel tubular beam-columns is presented. The application of the method is demonstrated by comparing the computed strength and ductility of some cantilever beam-columns with test results. The method is applicable for both the design of new, and retrofitting of existing, thin-walled steel tubular beam-columns. The effects of some important parameters, such as width-to-thickness ratio, column slenderness ratio, height of infill concrete and residual stress, on the ultimate strength and ductility of thin-walled steel tubular beam-columns, are presented and discussed.
机译:本文探讨了钢管混凝土结构(如支撑公路桥梁上部结构的柱)中的抗震设计和延性问题。指出了薄壁钢管结构的基本特征,并说明了混凝土填充在提高此类结构的强度和延展性方面的重要性。提出了一种抗震设计方法,用于评估钢管混凝土薄壁钢管混凝土梁柱的极限强度和延性。通过将一些悬臂梁柱的计算强度和延性与测试结果进行比较,证明了该方法的应用。该方法既适用于新设计,又适用于现有薄壁钢管梁柱的改造。提出并讨论了一些重要参数,如宽厚比,柱长比,填充混凝土的高度和残余应力对薄壁钢管梁柱的极限强度和延性的影响。

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