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The Performance of Preloaded Bolts in Seismically Prequalified Steel Joints in a Fire Scenario

机译:火灾情景中地震预核钢接缝中预载螺栓的性能

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摘要

Seismically pre-qualified beam-to-column joints guarantee large ductility in seismic scenarios thanks to the effectiveness of the design rules and technological requirements that are devoted to avoiding the failure of brittle components (i.e., bolts and welds). However, their performance under different severe actions like those induced by fire has not been properly investigated. Therefore, a parametric study based on finite element simulations has been carried out with the aim to verify the effectiveness of local details of seismically prequalified joints under fire. Finite element analyses were carried out on beam-to-column assemblies sub-structured from a reference archetype building accounting for both material and geometrical imperfections. The bolts’ internal actions were monitored in all the investigated specimens varying the applied vertical loads. The results show that the seismic design rules adopted to size the bolts are effective to resist the large increase in shear forces in the bolts occurring under fire. Thus, the investigated joints provide satisfactory ductility and rotation capacity at high temperature preventing the failure of bolts; further analysis could be conducted to investigated the fire performance of the investigated joints in a seismic scenario.
机译:由于设计规则的有效性和旨在避免脆弱部件(即螺栓和焊接)的设计规则和技术要求的有效性,地震预定梁到柱接头可以保证地震情景的大延展性。然而,他们在不同的严重行为下的表现尚未得到适当调查。因此,已经进行了基于有限元模拟的参数研究,其目的是验证在火灾中局部预定关节的局部细节的有效性。有限元分析在来自参考原型建筑物的梁到柱组件上进行,用于占材料和几何缺陷。在改变施加的垂直载荷的所有调查标本中监测螺栓的内部作用。结果表明,螺栓尺寸采用的地震设计规则有效地抵抗火灾中发生的螺栓中的剪切力的大幅增加。因此,研究的关节在高温下提供令人满意的延展性和旋转容量,防止螺栓失效;可以进行进一步分析以调查地震情景中调查的关节的火灾性能。

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