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首页> 外文期刊>Journal of Constructional Steel Research >Modelling partial end-plate connections under fire conditions
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Modelling partial end-plate connections under fire conditions

机译:在火灾条件下对部分端板连接进行建模

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This paper presents a simplified robust 2-noded connection element for modelling the behaviour of partial end-plate connections under fire conditions. In this new model the partial end-plate connection is modelled as a 2-noded nonlinear spring element. The characteristics of the spring - such as stiffness, tension, compression, shear strengths and bending moment resistance - are determined based on each component of the connection. It is well known that the rotational response of a partial end-plate connection comprises of two stages, due to the shift of the compression centre of the connection from the end of the endplate to the centre of the beam bottom flange at large rotation. This two stage behaviour is considered in the model proposed. Compared to normal component-based models the most significant of the current model is that this simplified model has very good numerical stability under static solver condition. The model also retains the advantages of both simple and component-based models. Fourteen tests of partial end-plate connection previously conducted by other researchers were used to validate the proposed model. It is evident that the model is capable to predict the behaviour of flexible end-plate connections under fire conditions. In order to investigate the influences of the connections on the behaviour of steel structures, a series of numerical studies has been conducted on a 2D steel frame, subjected to IS0834 Fire and Natural Fire. It is clear that the model can be used to represent the partial end-plate connections in performance-based fire resistance design of steel-framed composite buildings.
机译:本文提出了一种简化的鲁棒2节点连接元件,用于对着火条件下的部分端板连接行为进行建模。在这个新模型中,部分端板连接建模为2节点非线性弹簧元件。弹簧的特性(例如刚度,张力,压缩,剪切强度和抗弯矩性)是根据连接的每个组件确定的。众所周知,部分端板连接的旋转响应包括两个阶段,这是由于在大旋转时连接的压缩中心从端板的端部到梁底部法兰的中心的偏移。在建议的模型中考虑了这两个阶段的行为。与基于常规组件的模型相比,当前模型最重要的是,此简化模型在静态求解器条件下具有很好的数值稳定性。该模型还保留了简单模型和基于组件的模型的优点。之前由其他研究人员进行的十四次部分端板连接测试用于验证所提出的模型。显然,该模型能够预测火灾条件下柔性端板连接的行为。为了研究连接对钢结构性能的影响,已对承受IS0834火灾和自然火灾的2D钢框架进行了一系列数值研究。显然,该模型可用于表示钢框架复合建筑基于性能的防火设计中的部分端板连接。

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