Piotrowski Rafał, Szychowski Andrzej
Faculty of Civil Engineering and Architecture, Kielce University of Technology, 25-314 Kielce, Poland.
Materials (Basel). 2022 Feb 9;15(4):1275. doi: 10.3390/ma15041275.
This paper reports the results of the next stage of the authors' investigations into the effect of the elastic action of support nodes on the lateral torsional buckling of steel beams with a bisymmetric I-section. The analysis took into account beam elastic restraint against warping and against rotation in the bending plane. Such beams are found in building frames or frame structures. Taking into account the support conditions mentioned above allows for more effective design of such elements, compared with the boundary conditions of fork support, commonly adopted by designers. The entire range of variation in node rigidity was considered in the study, namely from complete freedom of warping to complete restraint, and from complete freedom of rotation relative to the stronger axis of the cross section (free support) to complete blockage (full fixity). The beams were conservatively assumed to be freely supported against lateral rotation, i.e., rotation in the lateral torsional buckling plane. Calculations were performed for various values of the indexes of fixity against warping and against rotation in the beam bending plane. In the study, formulas for the critical moment of bilaterally fixed beams were developed. Also, approximate formulas were devised for elastic restraint in the support nodes. The formulas concerned the most frequent loading variants applied to single-span beams. The critical moments determined in the study were compared, with values obtained using LTBeamN software (FEM). Good compliance of results was observed. The derived formulas are useful for the engineering design of this type of structures. The designs are based on a more accurate calculation model, which, at the same time offers simplicity of calculation.
本文报告了作者对支撑节点弹性作用对双对称工字形截面钢梁横向扭转屈曲影响的下一阶段研究结果。分析考虑了梁在翘曲和弯曲平面内旋转方面的弹性约束。此类梁常见于建筑框架或框架结构中。与设计者通常采用的叉形支撑边界条件相比,考虑上述支撑条件可使此类构件的设计更为有效。研究中考虑了节点刚度的整个变化范围,即从完全自由翘曲到完全约束,以及从相对于截面较强轴的完全自由旋转(自由支撑)到完全阻止(完全固定)。保守地假定梁在横向旋转(即横向扭转屈曲平面内的旋转)方面为自由支撑。针对梁在翘曲和弯曲平面内的固定指数的各种值进行了计算。研究中推导了双侧固定梁临界弯矩的公式。还设计了支撑节点弹性约束的近似公式。这些公式涉及单跨梁最常见的荷载形式。将研究中确定的临界弯矩与使用LTBeamN软件(有限元法)获得的值进行了比较。结果显示出良好的一致性。推导的公式对这类结构的工程设计有用。这些设计基于更精确的计算模型,同时计算具有简便性。