Structural response of aluminium alloy concrete filled tubular columns

ce/papers ◽  
2021 ◽  
Vol 4 (2-4) ◽  
pp. 614-620
Author(s):  
Evangelia Georgantzia ◽  
Shafayat Bin Ali ◽  
Michaela Gkantou ◽  
George S. Kamaris ◽  
Kunal Kansara ◽  
...  
2021 ◽  
Vol 1058 (1) ◽  
pp. 012010
Author(s):  
Shafayat Bin Ali ◽  
George S. Kamaris ◽  
Michaela Gkantou ◽  
Kunal Kansara ◽  
Khalid Hashim

Author(s):  
Qinghua Tan ◽  
Leroy Gardner ◽  
Linhai Han ◽  
Dianyi Song

In fire scenarios, concrete-filled stainless steel tubular (CFSST) columns undergo initial loading at ambient temperature, loading during the heating phase as the fire develops, loading during the cooling phase as the fire dies out and continual loading after the fire. CFSST columns may fail some points during this process under combined fire and loading. In this paper, the failure modes and corresponding working mechanism of CFSST columns subjected to an entire loading and fire history are investigated. Sequentially coupled thermal-stress analyses in ABAQUS are employed to establish the temperature field and structural response of the CFSST column. To improve the precision of the finite element (FE) model, the influence of moisture on the thermal conductivity and specific heat of concrete during both the heating and cooling phases is considered using subroutines. Existing fire and post-fire test data of CFSST columns are used to validate the FE models. Comparisons between predicted and test results confirm that the accuracy of the FE models is acceptable; the FE models are then extended to simulate a typical CFSST column subjected to the entire loading and fire history. The behaviour of the CFSST column is explained by analysis of the temperature distribution, load versus axial deformation curves and failure response.


2021 ◽  
Vol 242 ◽  
pp. 112546
Author(s):  
Evangelia Georgantzia ◽  
Shafayat Bin Ali ◽  
Michaela Gkantou ◽  
George S. Kamaris ◽  
Kunal D. Kansara ◽  
...  

2000 ◽  
Vol 10 (PR9) ◽  
pp. Pr9-335-Pr9-340 ◽  
Author(s):  
E. El-Magd ◽  
M. Brodmann

2020 ◽  
Vol 15 (1) ◽  
pp. 37-44
Author(s):  
El Mehdi Echebba ◽  
Hasnae Boubel ◽  
Oumnia Elmrabet ◽  
Mohamed Rougui

Abstract In this paper, an evaluation was tried for the impact of structural design on structural response. Several situations are foreseen as the possibilities of changing the distribution of the structural elements (sails, columns, etc.), the width of the structure and the number of floors indicates the adapted type of bracing for a given structure by referring only to its Geometric dimensions. This was done by studying the effect of the technical design of the building on the natural frequency of the structure with the study of the influence of the distribution of the structural elements on the seismic response of the building, taking into account of the requirements of the Moroccan earthquake regulations 2000/2011 and using the ANSYS APDL and Robot Structural Analysis software.


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