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On the behaviour, failure and direct strength design of thin-walled steel structural systems

机译:关于薄壁钢结构体系的行为,破坏和直接强度设计

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This paper reports the main results of an ongoing numerical investigation aimed at (ⅰ) assessing the buckling, post-buckling, strength and collapse behaviour of thin-walled steel structural systems and (ⅱ) developing an efficient direct approach to estimate the ultimate loading of such structural systems, which may fail in complex modes that combine local, distortional and global features. The results currently available, obtained from Generalised Beam Theory and Ansys shell finite element analyses, concern continuous beams and simple frames subjected to various transverse loadings applied at/along the shear centre axis and causing non-uniform bending. The possibility of developing a design approach, based on the application of the existing Direct Strength Method (DSM) strength curves, is explored for the structural systems under consideration. The quality of the corresponding failure loading estimates is assessed through the comparison with the values yielded by shell finite element simulations.
机译:本文报告了正在进行的数值研究的主要结果,该研究旨在(ⅰ)评估薄壁钢结构系统的屈曲,后屈曲,强度和倒塌行为,以及(ⅱ)开发一种有效的直接方法来估算钢的极限载荷。这样的结构系统,可能会在结合了局部,变形和整体特征的复杂模式下失效。从广义梁理论和Ansys壳体有限元分析获得的当前可用结果涉及连续梁和简单框架,这些梁和简单框架承受在剪切中心轴处/沿剪切中心轴施加的各种横向载荷并导致不均匀弯曲。对于正在考虑的结构系统,探索了基于现有直接强度方法(DSM)强度曲线的开发设计方法的可能性。通过与壳有限元模拟得出的值进行比较,可以评估相应的失效载荷估算值的质量。

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