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首页> 外文期刊>Journal of structural engineering >Seismic Capacity Quantification of Gusset-Plate Connections to Fracture for Ductility-Based Design
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Seismic Capacity Quantification of Gusset-Plate Connections to Fracture for Ductility-Based Design

机译:基于延性设计的折弯板-板连接的抗震能力量化

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摘要

This paper presents an experimental study on the seismic performance up to fracture of gusset-plate brace connections. During the inelastic behavior of a bracing member (e.g.,buckling), weak-axis bending in the gusset is induced by brace-end rotation and a plastic hinge is formed in a predefined inelastic zone (clearance distance) of the gusset. Five gusset-plate connections that can develop restraint-free plastic rotations to accommodate the brace-end rotation demands are tested. The test parameters include the plate thickness, length of clearance distance, and several inelastic rotation demands. The connections are tested using an innovative substructure-based hybrid test method that simulates the complex boundary and load conditions that exist between the gusset-plate connections and brace member. The tests quantify the maximum rotation ductility and strength capacity of the gusset-plate connections under actual cyclic inelastic rotations and varying axial loading. The test results also provide a basis for developing a ductility-based design methodology that determines the rotation ductility of gusset-plate connections using the brace-end rotation demand at a given axial deformation capacity of the brace. A design application example demonstrates the necessity of considering explicitly in the seismic design of steel braced frames the gusset-plate fracture capacity.
机译:本文提出了直至扣板-板撑连接断裂的抗震性能的实验研究。在支撑构件的无弹性行为(例如,屈曲)期间,角撑板中的弱轴弯曲是由支撑端旋转引起的,并且在角撑板的预定的无弹性区域(间隙距离)中形成了塑料铰链。测试了五个可实现无约束塑料旋转以适应撑杆端部旋转需求的角撑板连接。测试参数包括板厚,间隙长度和一些非弹性旋转要求。使用创新的基于子结构的混合测试方法对连接进行测试,该方法模拟了角撑板-板连接和支撑构件之间存在的复杂边界和载荷条件。该测试量化了在实际的周期性非弹性旋转和变化的轴向载荷下,角撑板-板连接的最大旋转延性和强度。测试结果也为开发基于延性的设计方法提供了基础,该设计方法可在给定的支撑轴向变形能力下,根据支撑端旋转需求确定角撑板-板连接的旋转延性。一个设计应用实例表明,在钢制支撑框架的抗震设计中必须明确考虑角撑板的断裂能力。

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