A thorough experimental and numerical study of the flexural behaviour and strengths of press-braked S960 ultra-high strength steel (UHSS) channel section beams bent about the minor principal axes is reported in this paper. The experimental study was conducted on eight different UHSS plain channel sections, and included measurements on the material flat and corner properties and initial local geometric imperfections of the beam specimens as well as 20 four-point bending tests performed about the minor principal axes in both the ‘u’ and ‘n’ orientations. A complementary numerical investigation was then conducted, where finite element (FE) models were firstly developed and validated against the experimental results, followed by parametric stud...
The present paper describes an in-depth experimental and numerical investigation into the in-plane f...
This paper reports an experimental and numerical investigation into the cross-section behaviour and ...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
This paper reports a comprehensive experimental and numerical study of the cross‐sectional behaviour...
This paper reports a comprehensive experimental and numerical study of the cross‐sectional behaviour...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
The present paper describes an in-depth experimental and numerical investigation into the flexural r...
The present paper describes an in-depth experimental and numerical investigation into the flexural r...
Ultra-high strength steel (UHSS) Grade S960 with the nominal yield stress of 960 MPa, is receiving i...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
A comprehensive experimental and numerical study of the cross-sectional compressive behaviour and re...
The structural performance and compression resistances of pin-ended press-braked S960 ultra-high str...
Ultra-high strength steel grade S960, with the nominal yield stress of 960 MPa, has been gaining inc...
The present paper describes an in-depth experimental and numerical investigation into the in-plane f...
The present paper describes an in-depth experimental and numerical investigation into the in-plane f...
This paper reports an experimental and numerical investigation into the cross-section behaviour and ...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
This paper reports a comprehensive experimental and numerical study of the cross‐sectional behaviour...
This paper reports a comprehensive experimental and numerical study of the cross‐sectional behaviour...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
The present paper describes an in-depth experimental and numerical investigation into the flexural r...
The present paper describes an in-depth experimental and numerical investigation into the flexural r...
Ultra-high strength steel (UHSS) Grade S960 with the nominal yield stress of 960 MPa, is receiving i...
Grade S960 ultra-high strength steel is receiving increasing attention owing to its excellent streng...
A comprehensive experimental and numerical study of the cross-sectional compressive behaviour and re...
The structural performance and compression resistances of pin-ended press-braked S960 ultra-high str...
Ultra-high strength steel grade S960, with the nominal yield stress of 960 MPa, has been gaining inc...
The present paper describes an in-depth experimental and numerical investigation into the in-plane f...
The present paper describes an in-depth experimental and numerical investigation into the in-plane f...
This paper reports an experimental and numerical investigation into the cross-section behaviour and ...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...