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Component-based model of fin plate connections exposed to fire-part II: Establishing of the component-based model

机译:暴露在火中的翅片连接的基于组件的模型II:基于组件的模型的建立

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To establish a component-based model for a fin plate connection exposed to fire, to be used for the fire resistance analysis of an entire structure, the plate in beating component was investigated omitting friction in the study reported in the previous companion paper. In this study, the bolt in shear component and fiction component are investigated and a component-based model of fin plate connection is established and verified. Firstly, the threaded bolt in shear component omitting friction is examined; a three-dimensional solid finite element analysis of the parameters affecting the properties of the component is performed- including bolt diameter, plate thickness and temperature. Then a prediction model for the resistance and initial stiffness of the bolt in shear component is proposed and the force-deflection function for the component is established. A finite element analysis of the friction in the lap joint was performed for determining the relationship between the friction component and the plate in bearing component and establishing the component-based model for the fin plate connection. Finally, the component-based model for the fin plate behaviour was employed for simulating the performance of the connection exposed to fire and subjected to complex forces. The simulation result exhibited a satisfactory fit with the results of the 3-D solid finite element simulation, which verified the accuracy of the component-based model. The simulation time also decreased from several days to several seconds. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了建立暴露于火中的翅片板连接的基于组件的模型,以用于整个结构的耐火性分析,在前一篇同行论文中报道的这项研究中,对跳动组件中的板进行了研究,以消除摩擦。在这项研究中,研究了剪切构件和小说构件中的螺栓,并建立并验证了基于构件的翅片板连接模型。首先,检查了螺栓中剪切力不产生摩擦的情况。对影响部件性能的参数进行三维固体有限元分析,包括螺栓直径,板厚和温度。然后建立了剪切构件中螺栓的阻力和初始刚度的预测模型,并建立了该构件的力-挠度函数。对搭接接头中的摩擦进行了有限元分析,以确定摩擦组件与轴承组件中的板之间的关系,并建立了翅片板连接的基于组件的模型。最后,基于鳍板行为的基于组件的模型用于模拟暴露于火中并承受复杂力的连接的性能。仿真结果与3-D实体有限元仿真的结果显示出令人满意的拟合,从而验证了基于组件的模型的准确性。模拟时间也从几天减少到几秒钟。 (C)2018 Elsevier Ltd.保留所有权利。

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