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整体式预制混凝土框架结构中梁柱节点的地震损伤评估

Seismic Damage Evaluation of Beam-Column Joints in Monolithic Precast Concrete Frame Structures.

作者信息

Cao Yan, Yang Zhao

机构信息

School of Arts Design, Wuchang University of Technology, Wuhan 430223, China.

School of Urban Construction, Wuhan University of Science and Technology, Wuhan 430065, China.

出版信息

Materials (Basel). 2022 Sep 1;15(17):6038. doi: 10.3390/ma15176038.

Abstract

Quantitative calculation and evaluation of seismic damage are very important for structural safety, performance-based structural analysis, and seismic reinforcement. However, the relevant research results for precast concrete structures are extremely limited. In this paper, the seismic damage evaluation of beam-column joints in monolithic precast concrete frames was studied through cyclic loading tests and damage index calculation. The seismic damage process, load-displacement relationship, stiffness degradation, and the influence of axial compression ratio were analyzed, then the damage indexes were calculated and analyzed, and the quantitative evaluation of joint damage was conducted last. The results show that the connection seams can significantly affect the mechanical properties of precast joints, easily causing damage concentration, resulting in a lower bearing capacity and faster stiffness degradation compared with a cast-in-situ joint. A larger axial compression ratio can bring higher bearing capacity for the precast joints, and the peak load can be increased by 42.9% when the axial compression ratio is increased from 0.2 to 0.4. In contrast, the stiffness degradation will be accelerated with the increase in the axial compression ratio. From yield load to peak load, the stiffness of the precast joint with the largest axial compression ratio decreases by 46.0%, while the joint with the smallest axial compression ratio is only 36.4%. The damage index model adopted in this paper can accurately reflect the damage characteristics of the precast joints. The presented damage states based on the damage index calculation can accurately reflect the joint's damage characteristics according to different stages. The paper realizes the quantitative damage evaluation for this kind of joint and provides a theoretical basis and method for further studies.

摘要

地震损伤的定量计算与评估对于结构安全、基于性能的结构分析以及抗震加固非常重要。然而,预制混凝土结构的相关研究成果极为有限。本文通过循环加载试验和损伤指标计算,对整体预制混凝土框架中梁柱节点的地震损伤评估进行了研究。分析了地震损伤过程、荷载-位移关系、刚度退化以及轴压比的影响,然后计算并分析了损伤指标,最后对节点损伤进行了定量评估。结果表明,连接接缝会显著影响预制节点的力学性能,容易导致损伤集中,与现浇节点相比,其承载力较低且刚度退化更快。较大的轴压比可为预制节点带来更高的承载力,当轴压比从0.2增加到0.4时,峰值荷载可提高42.9%。相比之下,刚度退化会随着轴压比的增加而加速。从屈服荷载到峰值荷载,轴压比最大的预制节点刚度降低了46.0%,而轴压比最小的节点仅为36.4%。本文采用的损伤指标模型能够准确反映预制节点的损伤特性。基于损伤指标计算给出的损伤状态能够根据不同阶段准确反映节点的损伤特性。本文实现了对这类节点的定量损伤评估,为进一步研究提供了理论依据和方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baea/9457278/6e4cb71cda7a/materials-15-06038-g001.jpg

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