S355JR UB 1016x305x584 structural steel beam
Chemical composition of S355JR metal h beam
Carbon content ≤0.22%, silicon content ≤0.55%, manganese content ≤1.60%, phosphorus and sulfur content ≤0.025%.
Mechanical properties of S355JR h shaped steel
When the thickness of the steel plate is ≤16mm, the yield strength is ≥355MPa. As the thickness increases, the yield strength will gradually decrease. For example, when the thickness is 16-40mm, the yield strength is ≥345MPa, and the tensile strength is generally between 470-630MPa.
Performance characteristics of S355JR h beam material
It has good plasticity, processing performance, welding performance and corrosion resistance, and can provide higher load-bearing capacity and deformation resistance while ensuring a certain toughness.
Specifications of UB 1016x305x584 h beam steel structure
Dimensions: UB 1016x305x584 represents British standard H-shaped steel, with a height of 1016mm, a flange width of 305mm, and a weight of 584kg per meter.
Implementation standards: British standard H-shaped steel implements EN standards, the size standard is BS EN10365 - 2017, and the tolerance standard is EN10034:1993.
Product features of UB 1016x305x584 h shaped beam
Reasonable structural design: The H-shaped steel structure makes the steel have strong bending resistance in all directions, reasonable web and flange thickness, high bearing capacity and excellent stability. It can withstand large loads and is suitable for projects with high structural strength requirements.
Excellent material performance: S355JR material is selected, which has high strength and can meet the requirements of steel strength for various projects. At the same time, it has good toughness. When the structure is subjected to external force, it can absorb energy through plastic deformation to improve the safety of the structure.
Good processing performance: easy to cut, bend, form and other processing operations, can be processed into various shapes and sizes according to engineering needs, and can adapt to different construction processes and complex engineering structure requirements.




















