某超长跨度网架钢拱结构连续倒塌分析

IF 0.6 4区 工程技术 Q4 MECHANICS Journal of Theoretical and Applied Mechanics Pub Date : 2023-01-18 DOI:10.15632/jtam-pl/157311
Shuang-quan Guo, Delin Xu, Kaiguang Shang, Shuo Yang, Di Wang, Geng Li, B. Zheng, Yong Jiao
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引用次数: 1

摘要

具有大量构件和大跨度的空间网架结构的连续倒塌是目前研究的热点。在结构逐渐倒塌之前,存在构件失稳问题。本文采用Abaqus中Vumat材料子程序编制的考虑构件失稳的运动硬化塑性本构模型,对某超长跨格构钢拱结构进行动力非线性分析,研究其连续倒塌过程。比较了采用构件稳定模型和材料破坏本构模型的结构在倒塌时刻的动力响应过程和构件破坏顺序的差异。与材料破坏本构模型相比,采用构件稳定本构模型时,构件的压缩屈曲在结构破坏中所占比例更高,发生初始破坏时结构的承载能力较低。结构主要是构件局部受压破坏而非材料屈服,从而导致结构的渐进式倒塌。
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Analysis of progressive collapse of a super-long span latticed steel arch structure
The progressive collapse of a space grid structure which has a large number of members and a large span is the focus of current research. Before the progressive collapse of the structure, there is a problem of instability of the members. In this paper, dynamic nonlinear analysis of a super-long span latticed steel arch structure is carried out to study its progressive collapse process using a Kinematic Hardening Plasticity constitutive model compiled by Vumat material subprogram in Abaqus, which takes into account instability of the members. Differences in the dynamic response process of the structure at the collapse moment and the failure sequence of the members using the member stability model and the material failure constitutive model are compared. Compared with the material failure constitutive model, when the member stability constitutive model is used, the proportion of compressive buckling members in the structural failure is higher, and the bearing capacity of the structure is lower when the initial failure occurs. The structure suffers from localized member compressive failure rather than material yielding, which leads to the progressive collapse of the structure.
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来源期刊
CiteScore
1.40
自引率
14.30%
发文量
22
审稿时长
6 months
期刊介绍: The scope of JTAM contains: - solid mechanics - fluid mechanics - fluid structures interactions - stability and vibrations systems - robotic and control systems - mechanics of materials - dynamics of machines, vehicles and flying structures - inteligent systems - nanomechanics - biomechanics - computational mechanics
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