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Fracture of mechanical shear connectors in composite beams

机译:复合梁中机械剪切连接器的断裂

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Composite beams in buildings are usually designed using an equilibrium approach that inherently assumes that the mechanical shear connectors have an unlimited slip capacity. Failure of the beam by fracture of the shear connectors through excessive slip is prevented by placing a lower bound to the strength of the shear connectors, that is, the degree of shear connection. A procedure is developed for designing composite beams with any degree of shear connection. It will be shown that fracture of the shear connectors through excessive slip depends not only on the degree of shear connection, the slip capacity of the shear connectors, and the span of the beam, but also on the elastic and plastic cross-sectional properties as well as the ductility requirements of the beam. In this paper, an analysis approach will be developed to illustrate the fundamental parameters that affect fracture of the shear connectors, and design rules will be formulated that can be used in practice.
机译:建筑物中的复合梁通常使用平衡方法进行设计,该方法固有地假定机械剪切连接器具有无限的滑移能力。通过对剪切连接器的强度(即剪切连接的程度)设置下限,可以防止因剪切连接器因过度滑动而断裂而导致梁失效。开发了一种程序来设计具有任意剪切连接度的组合梁。结果表明,剪切连接器由于过度滑动而断裂,不仅取决于剪切连接的程度,剪切连接器的滑动能力和梁的跨度,还取决于弹性和塑性截面特性,例如以及梁的延展性要求。在本文中,将开发一种分析方法来说明影响剪切连接器断裂的基本参数,并将制定可在实践中使用的设计规则。

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