composite joints
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2022 ◽  
Author(s):  
Alex Harman ◽  
Lachlan J. Webb ◽  
Kevin H. Hoos ◽  
Endel V. Iarve ◽  
David Mollenhauer

2022 ◽  
Author(s):  
John S. Brewer ◽  
Anthony N. Palazotto ◽  
Casey Holycross ◽  
Michael Gran

2022 ◽  
Author(s):  
Milvia O. Reis ◽  
Lidianne de Paula ◽  
Suchilla G. Leao ◽  
Thaiane T. Ximenes ◽  
Elvis C. Monteiro ◽  
...  
Keyword(s):  

Symmetry ◽  
2021 ◽  
Vol 13 (12) ◽  
pp. 2381
Author(s):  
Jing Ji ◽  
Wen Zeng ◽  
Liangqin Jiang ◽  
Wen Bai ◽  
Hongguo Ren ◽  
...  

In order to acquire the hysteretic behavior of the asymmetrical composite joints with concrete-filled steel tube (CFST) columns and unequal high steel beams, 36 full-scale composite joints were designed, and the CFST hoop coefficient (ξ), axial compression ratio (n0), concrete cube compressive strength (fcuk), steel tube strength (fyk), beam, and column section size were taken as the main control parameters. Based on nonlinear constitutive models of concrete and the double broken-line stress-hardening constitutive model of steel, and by introducing the symmetric contact element and multi-point constraint (MPC), reduced-scale composite joints were simulated by ABAQUS software. By comparing with the test curves, the rationality of the modeling method was verified. The influence of various parameters on the seismic performance of the full-scale asymmetrical composite joints was investigated. The results show that with the increasing of fcuk, the peak load (Pmax) and ductility of the specimens gradually increased. With the increasing of n0, the Pmax of the specimens gradually increases firstly and then gradually decreases after reaching a peak point. The composite joints have good energy dissipation capacity and the characteristic of stiffness degradation. The oblique struts force mechanism in the full-scale asymmetrical composite joint domain is proposed. By introducing influence coefficients (ξ1 and ξ2), the expression of shear bearing capacity of composite joints is obtained by statistical regression, which can provide theoretical support for the seismic design of asymmetrical composite joints.


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