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Component-Based Model for Single-Plate Shear Connections with Pretension and Pinched Hysteresis

机译:具有预紧和滞后滞后的单板剪切连接的基于组件的模型

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摘要

Component-based connection models provide a natural framework for modeling the complex behaviors of connections under extreme loads by capturing both the individual behaviors of the connection components, such as the bolt, shear plate, and beam web, and the complex interactions between those components. Component-based models also provide automatic coupling between the in-plane flexural and axial connection behaviors, a feature that is essential for modeling the behavior of connections under column removal. This paper presents a new component-based model for single-plate shear connections that includes the effects of pre-tension in the bolts and provides the capability to model standard and slotted holes. The component-based models are exercised under component-level deformations calculated from the connection demands via a practical rigid-body displacement model, so that the results of the presented modeling approach remains hand-calculable. Validation cases are presented for connections subjected to both seismic and column removal loading. These validation cases show that the component-based model is capable of predicting the response of single-plate shear connections for both seismic and column removal loads.
机译:基于组件的连接模型通过捕获连接组件(例如螺栓,剪力板和梁腹板)的各个行为以及这些组件之间的复杂相互作用,为在极端载荷下的复杂行为建模提供了自然的框架。基于组件的模型还提供了平面内弯曲和轴向连接行为之间的自动耦合,这对于在移除柱子时对连接行为进行建模至关重要。本文介绍了一种用于单板剪切连接的基于组件的新模型,该模型包括螺栓中预紧力的影响,并提供了对标准孔和带槽孔进行建模的功能。基于组件的模型在实际的刚体位移模型下根据连接需求计算出的组件级变形下使用,因此,所提出的建模方法的结果仍然可以手动计算。给出了承受地震和柱移除荷载的连接的验证案例。这些验证案例表明,基于构件的模型能够预测地震荷载和柱移除荷载下单板剪切连接的响应。

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