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INFLUENCE OF STIFFENING RIBS ON WARPING STRESS OF THE THIN-WALLED STEEL BOX BEAM

机译:加强肋对薄壁钢箱梁翘曲应力的影响

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To reduce the warping stress of the thin-walled steel box beam subjected to restrained torsion, transverse stiffening ribs are set. The warping stress is calculated by the finite element software ANSYS considering the influence of the stiffening ribs of the thin-walled box beam with different forms and different spacing intervals. There are four different stiffening rib's forms to be analyzed and compared. It can be concluded that the stiffening ribs with hollow rectangle section can significantly reduce warping stress in the thin-walled box beam and save the materials at the same time. The other conclusion is the warping stress in the thin-walled box beam will decrease remarkably only when the spacing interval of the stiffening ribs is less than one fifth of the beam length. These conclusions provide references for how to design and layout the stiffening ribs when designing thin-walled box beam in restrained torsion in the practical construction.
机译:为了减小经过束缚扭转的薄壁钢箱梁的翘曲应力,设定横向加强肋。考虑到具有不同形式和不同间隔间隔的薄壁盒梁梁的加强肋的影响​​,由有限元软件Ansys计算翘曲应力。有四种不同的加强肋骨形式进行分析并进行比较。可以得出结论,具有中空矩形部分的加强肋可以显着减少薄壁箱梁中的翘曲应力并同时保存材料。另外的结论是薄壁盒梁中的翘曲应力仅在加强肋的间隔间隔小于光束长度的五分之一时显着地降低。这些结论提供了在实际结构中设计薄壁盒束时如何设计和布局加强肋的引用。

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