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Stability and Resistance of Steel Continuous Beams with Thin-Walled Box Sections

机译:薄壁箱形截面钢连续梁的稳定性和抗力

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The issues of local stability and ultimate resistance of a continuous beam with thin-walled box section (Class 4) were reduced to the analysis of the local buckling of bilaterally elastically restrained internal plate of the compression flange at longitudinal stress variation. Critical stress of the local buckling was determined using the so-called Critical Plate Method (CPM). In the method, the effect of the elastic restraint of the component walls of the bar section and the effect of longitudinal stress variation that results from varying distribution of bending moments were taken into account. On that basis, appropriate effective characteristics of reliable sections were determined. Additionally, ultimate resistances of those sections were estimated. The impact of longitudinal stress variation and of the degree of elastic restraint of longitudinal edges on, respectively, the local buckling of compression flanges in the span section (p) and support section (s) was analysed. The influence of the span length of the continuous beam and of the relative plate slenderness of the compression flange on the critical ultimate resistance of box sections was examined.
机译:薄壁箱形截面连续梁(4类)的局部稳定性和极限抗力问题被简化为分析了压缩翼缘在纵向应力变化时受双向弹性约束的内板的局部屈曲。局部屈曲的临界应力是使用所谓的临界板法(CPM)确定的。在该方法中,考虑了杆部分的构件壁的弹性约束作用和由于弯矩的分布变化而引起的纵向应力变化的影响。在此基础上,确定了可靠截面的适当有效特性。此外,估计了这些部分的极限阻力。分析了纵向应力变化和纵向边缘的弹性约束程度分别对跨度段(p)和支撑段(s)中压缩法兰的局部屈曲的影响。研究了连续梁的跨度和压缩法兰的相对板细长度对箱形截面临界极限抗力的影响。

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