Punching Shear Mechanism Based Design of Concrete-Filled CHS T-Joints under In-Plane Bending

Fei Xu, T. Chan, Ju Chen
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Abstract

The in-plane bending behaviour of concrete-filled circular hollow section (CHS) T-joints was examined in this paper. The main failure mode, the punching shear of the chord-wall, was observed from the test of four large-scale joints with the diameter ratio of brace to chord (β) ranging from 0.44 to 0.85. The tube-wall deformation was measured to assess the governing failure mode of the composite joints. Complementary finite element (FE) methodology was verified against the experimental findings and the validated FE models were used to further investigate the mechanical behaviour and the design methodology. The feasibility to apply a fracture criterion in the material-level to a large-scale structural simulation was evaluated. The validated FE modes could successfully capture the tube-wall fracture initiation and propagation. Based on both experimental and numerical investigations, it was shown that the capacity of composite joints was governed by the ultimate strength limit, i.e. punching shear strength, due to the infill concrete that mitigated both inward and outward deformation on the compressive and tensile sides, respectively. The analytical model was established to reveal the composite actions between the tube and the inner concrete, and to elaborate the development of the flexural section-resistance. Finally, the design equation was proposed and could well predict the moment capacity. 
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面内弯曲下基于冲孔剪切机制的CHS t形节点设计
本文研究了圆空心混凝土t形节点的面内弯曲性能。4个大型节理的破坏模式以弦壁冲剪为主,柱弦直径比(β)在0.44 ~ 0.85之间。通过测量管壁变形来评估复合接头的控制破坏模式。根据实验结果验证了互补有限元(FE)方法,并使用验证的有限元模型进一步研究力学行为和设计方法。对材料层面断裂准则应用于大尺度结构模拟的可行性进行了评价。经验证的有限元模型可以很好地捕捉管壁裂缝的起裂和扩展过程。基于试验和数值研究表明,由于填充混凝土分别减轻了压侧和拉侧的向内和向外变形,复合节点的承载力受极限强度限制,即冲剪强度的影响。建立了分析模型,揭示了筒体与内部混凝土的复合作用,阐述了弯截面阻力的发展过程。最后,提出了能较好地预测弯矩承载力的设计方程。
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