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Behavior of stud connections between concrete slabs and steel girders under transverse bending moment

机译:横向弯矩作用下混凝土板与钢梁螺柱连接行为

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The effect of transverse bending moment on stud connections is usually ignored in the design of steel concrete composite bridges due to beam web flexibility. However, large transverse moment may arise near transverse stiffeners and diaphragms, because they constrain and stiffen the webs and cause tensile forces in stud connectors. Large web spacing and wide cantilevers increase these effects. This study experimentally and numerically investigates this behavior. Four groups of pull-out tests of a single stud connector under tension force are performed, and they provide insight into the behavior of stud connectors under direct tensile loading. Then four stud connections at interfaces near transverse stiffeners are tested to investigate their behavior under transverse bending moment. Numerical models of the stud connections are established to explore local behavior. The pull-out tests show that stud height greatly influences failure mode, tension strength and ultimate separation between the steel flange and the concrete slab. A tension-separation relationship is developed from the test results and used in subsequent numerical simulations. The stud connection tests suggest that longer studs can increase the bending moment and deformation capacities. Reduced longitudinal stud spacing significantly increases the stiffness, but may result in brittle failure of the concrete slab. Stud connectors should not be welded immediately over transverse stiffeners. Numerical simulations and test data compare well, and numerical results predict tensile forces in studs located near the steel web and in the region near stiffeners and other web restraint. The stud connectors in the two innermost rows on either side of a transverse stiffener provide the restraint to develop the tensile force in the studs caused by transverse bending moments. The force in a stud increases as its distance from the steel web increases and its distance from the transverse stiffener decreases. Shear-tension interaction should be checked for these connectors. Details of transverse stud arrangements with various stud heights are provided. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于梁腹板的柔韧性,在钢混凝土组合桥的设计中通常忽略了横向弯矩对双头螺栓连接的影响。但是,在横向加劲肋和隔板附近可能会产生较大的横向力矩,因为它们会约束并加强腹板并在双头螺栓连接器中产生拉力。较大的纸幅间距和较宽的悬臂会增加这些效果。这项研究通过实验和数值研究了这种行为。对单个双头螺栓连接器在拉伸力下进行了四组拔出测试,它们提供了对双头螺栓连接器在直接拉伸载荷下的行为的了解。然后测试横向加劲肋附近界面处的四个双头螺栓连接,以研究它们在横向弯矩下的行为。建立螺柱连接的数值模型以探索局部行为。拉拔试验表明,螺柱高度会极大地影响破坏模式,抗拉强度以及钢法兰与混凝土板之间的最终间距。从测试结果得出张力-分离关系,并将其用于后续的数值模拟中。螺柱连接测试表明,较长的螺柱可以增加弯矩和变形能力。减小的纵向螺柱间距会显着增加刚度,但可能导致混凝土板的脆性破坏。螺柱连接器不应立即焊接在横向加劲肋上。数值模拟和测试数据进行了很好的比较,数值结果预测了位于钢腹板附近以及加强筋和其他腹板约束附近区域的双头螺栓中的拉力。横向加强筋两侧的最里面两排中的双头螺栓连接器提供了约束,以产生由横向弯曲力矩引起的双头螺栓中的拉力。螺柱中的力随着距钢腹板距离的增加和距横向加强筋的距离的减小而增加。应检查这些连接器的剪力相互作用。提供具有不同螺柱高度的横向螺柱布置的细节。 (C)2016 Elsevier Ltd.保留所有权利。

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