首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Warping Torsional and Distortional Stress of Composited Box Girder with Corrugated Steel Webs
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Warping Torsional and Distortional Stress of Composited Box Girder with Corrugated Steel Webs

机译:波形钢腹板组合箱梁的翘曲扭转和变形应力

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The torsional behaviors of composite box girders with corrugated steel webs are more obvious than traditional concrete girders due to the lower torsional rigidity. In this paper, the torsion and distortion of this kind of composite girder are studied. The formulas for warping normal stress and shear stress were put forward according to the second theory of Umanskii, considering the accordion effect of corrugated steel webs. Then, the influences of different dimensional parameters on the torsional and distortional stress are investigated. Results show that the effect of parameters on stress is different and implicit in composite box girders with corrugated steel webs. Under eccentric loads, the warping torsional and distortional stress in this kind of girder should not be neglected. Compared with girders under corresponding symmetric loads, the total warping stress may be as big as flexural normal stress, and the total shear stress usually reaches 30 to 50 percentage of flexural shear stress. So the warping stress and additional shear stress due to warping torsion and distortion are suggested to be calculated by the proposed equations in structural analysis, which are usually not taken into account in conventional concrete box girders.
机译:波纹钢腹板组合箱梁的扭转性能比传统混凝土箱梁更明显,因为其较低的扭转刚度。本文研究了这种组合梁的扭转和变形。考虑到波纹钢腹板的手风琴效应,根据Umanskii的第二种理论,提出了翘曲正应力和剪应力的公式。然后,研究了不同尺寸参数对扭转应力和变形应力的影响。结果表明,参数对应力的影响在波纹钢腹板复合箱梁中是不同的,并且是隐含的。在偏心载荷下,这种梁的扭曲扭转和变形应力不容忽视。与在相应对称载荷下的大梁相比,总翘曲应力可能与弯曲法向应力一样大,并且总剪应力通常达到挠曲剪应力的30%至50%。因此,建议通过结构分析中的公式来计算由于翘曲扭曲和变形引起的翘曲应力和附加剪应力,而常规混凝土箱梁通常不考虑这些翘曲。

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