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Comparison Study on Crossbeam Web Cutout of Different Shapes for Orthotropic Steel Bridge Deck

机译:正交异性钢桥面横梁腹板不同形状切口的比较研究

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摘要

For orthotropic steel bridge deck (OSD),principle tensile stresses near the end of joint of crossbeam web and longitudinal rib and at the edge of crossbeam cutout are dependent on the shape of crossbeam cutout to a great extent.They are results of many factors,among which bending-shearing effect and in-plane supporting effect are in-plane factors,unsymmetrical loading effect and relative longitudinal deformation effect are out-of-plane factors.Comparison study on stresses at some fatigue sensitive regions of orthotropic steel deck with six types of crossbeam web cutout indicates that the top height of cutouts determines the distance between the end of joint and the neutral axis,which affects the bending effect seriously,and the area of cutouts determines the shearing effect.When OSD system is affected by bending-shearing effect,increasing the top height decreases the principle tensile stresses near the end of joint but increases the stresses at the edge of cutout,and increasing the area increases the principle tensile stresses both near the end and at the edge of cutout.When the top height of cutouts increases,the contact area between crossbeam web drops,then the principle tensile stresses near the joint produced by in-plane supporting effect increases.When the side width of cutouts increases,the constraint effect of the crossbeam web to longitudinal rib decreases,then the principle tensile stresses near the joint produced by out-of-plane effects decreases.Generally,OSD system with stiff cutouts behaves well when affected by in-plane effects,and OSD system with flexible cutouts behaves well when affected by out-of-plane effects.
机译:对于正交异性钢桥面板(OSD),横梁腹板与纵肋连接处的末端附近以及横梁切口边缘处的原理拉伸应力在很大程度上取决于横梁切口的形状。它们是多种因素共同作用的结果,其中正交各向异性钢甲板某些疲劳敏感区的应力比较研究,其中弯曲剪切效应和面内支撑效应为面内因子,不对称载荷效应和相对纵向变形效应为面外因子。横梁腹板切口的数量表示切口的最高高度决定了接头末端与中性轴之间的距离,严重影响了弯曲效果,切口的面积决定了剪切效果。当OSD系统受弯曲剪切影响时效果,增加顶部高度可以减小接缝末端附近的主拉应力,但可以增加切口边缘的应力,并可以增加当切口的顶部和边缘的顶部的高度增加时,横梁腹板之间的接触面积下降,则由于面内支撑作用而在接头附近产生的原理拉应力会增加。当切口的侧边宽度增加时,横梁腹板对纵向肋的约束作用减小,然后由面外效应在节点附近产生的主张应力减小。通常,具有刚性切口的OSD系统在受到应力影响时表现良好。平面效果,具有开孔灵活的OSD系统在受到平面效果影响时表现良好。

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