The present paper reports comprehensive experimental and numerical investigations into the cross-section behaviour and resistances of S960 ultra-high strength steel welded I-sections under combined compression and minor-axis bending moment. An experimental programme, adopting two slender welded I-sections – I-120 × 120 × 6 and I-150 × 75 × 6, was firstly conducted and included initial local geometric imperfection measurements and ten minor-axis eccentric compression tests. A numerical modelling programme was then performed, where finite element models were firstly developed and validated against the test results and then employed to perform parametric studies to generate further numerical data over a wide range of cross-section dimensions a...
Experimental and numerical studies on hot-rolled stainless steel channel sections subjected to combi...
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...
This paper presents a comprehensive experimental and numerical investigation into the cross-section ...
This paper presents experimental and numerical investigations of the buckling behaviour and resistan...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
This paper presents experimental and numerical investigations into the cross-sectional behaviour and...
Ultra-high strength steel grade S960, with the nominal yield stress of 960 MPa, has been gaining inc...
Testing and numerical modelling have been conducted to investigate the cross-sectional behaviour and...
The present paper reports a thorough experimental and numerical study of the structural behaviour an...
The present paper reports in-depth experimental and numerical studies of the cross-sectional behavio...
This paper presents a numerical investigation into the high strength steel (HSS) welded I-section ov...
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...
Experimental and numerical studies on hot-rolled stainless steel channel sections subjected to combi...
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...
This paper presents a comprehensive experimental and numerical investigation into the cross-section ...
This paper presents experimental and numerical investigations of the buckling behaviour and resistan...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
The structural performance of S960 ultra-high strength steel non-slender welded I-sections subjected...
This paper presents experimental and numerical investigations into the cross-sectional behaviour and...
Ultra-high strength steel grade S960, with the nominal yield stress of 960 MPa, has been gaining inc...
Testing and numerical modelling have been conducted to investigate the cross-sectional behaviour and...
The present paper reports a thorough experimental and numerical study of the structural behaviour an...
The present paper reports in-depth experimental and numerical studies of the cross-sectional behavio...
This paper presents a numerical investigation into the high strength steel (HSS) welded I-section ov...
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...
Experimental and numerical studies on hot-rolled stainless steel channel sections subjected to combi...
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...