Buckling resistance of hot‐finished CHS beam‐columns using FE modelling and machine learning

Author:

Rabi Musab1,Abarkan Ikram2,Shamass Rabee3

Affiliation:

1. Department of Civil Engineering Jerash University 26150 35 Rd Jerash Jordan

2. Department of Physics Faculty of Sciences Abdelmalek Essaâdi University 93002 Av. 9 Avril Tetouan Morocco

3. Senior lecturer Division of Civil and Building Services Engineering School of Build Environment and Architecture London South Bank University SE1 0AA 103 Borough Rd London UK

Abstract

AbstractThe use of circular hollow sections (CHS) has increased in recent years owing to its excellent mechanical behaviour including axial compression and torsional resistance as well as its aesthetic appearance. They are popular in a wide range of structural members, including beams, columns, trusses and arches. The behaviour of hot‐finished CHS beam‐columns made from normal‐ and high‐strength steels is the main focus of this article. A particular attention is given to predict the ultimate buckling resistance of CHS beam‐columns using the recent advancement of the artificial neural network (ANN). Finite element (FE) models were established and validated to generate an extensive parametric study. The ANN model is trained and validated using a total of 3439 data points collected from the generated FE models and experimental tests available in the literature. A comprehensive comparative analysis with the design rules in Eurocode 3 is conducted to evaluate the performance of the developed ANN model. It is shown that the proposed ANN‐based design formula provides a reliable means for predicting the buckling resistance of the CHS beam‐columns. This formula can be easily implemented in any programming software, providing an excellent basis for engineers and designers to predict the buckling resistance of the CHS beam–columns with a straightforward procedure in an efficient and sustainable manner with least computational time.

Publisher

Wiley

Subject

Metals and Alloys,Mechanics of Materials,Building and Construction,Civil and Structural Engineering

Reference62 articles.

1. EN 1993–1-12 (2007)Eurocode 3 – Design of Steel Structures – Part 1–12: Additional Rules for the Extension of EN 1993 up to Steel Grades S 700. Brussels: European Committee for Standardization (CEN).

2. Sperle J.; Hallberg L.; Larsson J.; Groth H.; Östman K.; Larsson J. (2013)The Environmental Value of High Strength Steel Structures. Environmental Research Programme for the Swedish Steel Industry. The Steel Eco-Cycle pp. 151–171 Swed.

3. Baddoo N.; Chen A. (2020)High Strength Steel Design and Execution Guide. SCI (the Steel Construction Institute) London United Kingdom.

4. prEN 1993–1-1 : 2020 (2020)Eurocode 3 – Design of Steel Structures – Part 1–1: General Rules And rules for Buildings Final document. Brussels: European Committee for Standardization (CEN).

5. EN 10219–2 : 2019 (2006)Cold-Formed Welded Structural Hollow Sections of Non-alloy and Fine Grain Steels – Part 2: Tolerances Dimensions and Sectional Properties. Brussels: European Committee for Standardization (CEN).

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