基于旋转弹簧组件的抗震钢-混凝土复合连接件和框架(带连续或隔离板)优化建模策略

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL
Marco Fasan , Chiara Bedon , Maria Rosaria Pecce
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引用次数: 0

摘要

钢-混凝土复合材料系统中的接缝和框架是复杂的机械组件,需要特定的计算程序来优化其细节和结构承载能力,尤其是在地震荷载下。为此,以构件为基础的建模方法应能考虑到单个构件最相关的机理和阻力/刚度行为,以及它们之间的相互作用。本文针对钢-混凝土复合梁柱连接考虑了两种不同的简化非线性方法,并将其具体应用于带有 X 同心支撑的抗震案例研究框架。对带板或连续板("JA "连接)或全隔离板("JB "连接)的梁柱连接进行了研究。首先,根据意大利 DPC-ReLUIS 指南中提出的力-位移关系,在先前研究("1 "型模型("T1"))的基础上组装和校准了非线性轴向弹簧。随后,提出了一种基于非线性旋转弹簧的新型建模方法("2 "型模型("T2")),以进一步简化 T1 策略的计算成本,并有效地考虑受检关节的力矩旋转行为。根据以往的文献实验进行了初步的数值验证。此外,优化的 T2 方法还被用于探索二维钢-混凝土复合框架的平面内横向抗震性能,该框架专门设计了 X 同心支撑。在推力分析的基础上,探讨了框架的抗震能力(以及相关部件的相互作用,特别是与支撑系统的连接区域)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimised rotational-spring component-based modelling strategy for seismic resistant steel-concrete composite joints and frames with continuous or isolated slab
Joints and frames in steel-concrete composite systems represent complex mechanical assemblies that require specific calculation procedures to optimise their detailing and structural capacity, particularly under seismic loads. To this aim, component-based modelling approaches should be able to account for the most relevant mechanisms and resistance/stiffness behaviours of individual members, and their mutual interaction. In this paper, two different simplified non-linear approaches are considered for steel-concrete composite beam-to-column joints, and are specifically applied to a seismic resistant case-study frame with X-concentric bracings. Both beam-to-column joints with or continuous (“JA” joint) or fully isolated (“JB” joint) slab are examined. First, non-linear axial springs are assembled and calibrated on the base of a previous study (“Type 1″ model (“T1″)), according to force-displacement relationships proposed in the DPC-ReLUIS Italian guidelines. Successively, a novel modelling approach based on non-linear rotational springs is presented (“Type 2″ model (“T2″)), to further simplify the computational cost of T1 strategy, and allow to efficiently account for the moment-rotation behaviour of the examined joints. The preliminary numerical validation is carried out based on past literature experiments. Moreover, the optimized T2 approach is used to explore the in-plane lateral, seismic performance of a 2D steel-concrete composite frame, which is specifically designed with X-concentric bracings. The seismic capacity of the frame (and the associated interaction of components, especially the joint zone with the bracing system) is addressed on the base of pushover analyses.
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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