Crafted by specialized steel manufacturers, this universal H beam features a core 150×75mm size, with a full range of 120×60mm to 900×300mm, web thickness 5–22mm, flange thickness 7–38mm, and lengths 6–14m, compliant with ASTM A36 and A572 Grade 50 (345MPa yield) standards. Engineered for heavy welding projects like crane supports and industrial machinery bases, it delivers tensile strength 450–650MPa, resisting extreme dynamic loads. Hot rolling enhances material density and impact resistance, ensuring strong weld joints without cracking. Factory customization supports non-standard lengths and thicknesses for unique designs, with strict quality control meeting global structural codes. It is a durable choice for industrial projects requiring high-weldability structural steel.

High Strength Q355B Structural Steel Professional Hot Rolled Wide Flange H Beam
This heavy-duty wide flange H beam uses Q355B high-strength steel (355MPa yield strength), with sizes 250×125mm to 1000×300mm, web thickness 8–28mm, flange thickness 12–50mm, and lengths 6–14m. Designed for critical infrastructure like bridge piers, highway guardrails, and high-rise building cores, it delivers tensile strength 470–630MPa and excellent seismic performance. The wide flange design optimizes load distribution, minimizing deflection under ultra-heavy loads. Hot rolling ensures uniform grain structure and low-temperature toughness, suitable for harsh environmental conditions. Compliant with GB/T 1591 standards, it offers superior weldability and workability for large-scale construction, balancing high strength and durability for demanding structural applications.
W6×9 S235jr Steel H Beam Hot Rolled/Welded 150×100mm for Residential Steel Frames
This residential-focused H beam combines W6×9 (152×102mm imperial) and 150×100mm metric sections, with web thickness 5–12mm, flange thickness 7–20mm, and lengths 6–10m, made of S235jr structural steel. Available in hot rolled and welded variants, it delivers tensile strength 360–510MPa, ideal for residential steel frames, staircases, and balcony supports. Hot rolled versions feature precise dimensional accuracy for modular home construction, while welded options offer cost-efficiency for small-scale projects. The compact H-shape reduces foundation load and transportation costs, with excellent weldability for integration with other steel components. Compliance with EN 10025 standards ensures safety and reliability, making it a preferred choice for eco-friendly residential building projects.

W6×7 S235jr Steel H Beam Hot Rolled/Welded 150×75mm for Light Industrial Frames
This versatile H beam combines W6×7 (152×89mm imperial wide flange) and 150×75mm metric sections, with web thickness 5–12mm, flange thickness 7–18mm, and customizable lengths 6–12m, crafted from S235jr structural steel (235MPa yield strength). Available in both hot rolled and welded variants, it delivers balanced tensile strength of 360–510MPa, ideal for light industrial frames, mezzanine supports, and small workshop structures. Hot rolled versions feature uniform grain structure and superior ductility for load-bearing stability, while welded options offer cost-efficiency for non-critical components. Excellent weldability and workability simplify on-site fabrication, and compliance with EN 10025 standards ensures consistent performance. It balances compact size and reliable strength for projects requiring lightweight structural solutions.
Manufacturer Hot Rolled 100mm H Beam Steel ASTM A36 A992 Universal Welding H Beam
Produced directly by steel manufacturers, this universal H beam features a core 100×50mm size, extending to 800×300mm, with web thickness 4–20mm, flange thickness 6–35mm, and lengths 6–14m, compliant with ASTM A36 (250MPa yield) and A992 (345MPa yield) standards. Engineered for welding-intensive projects like warehouse racks and equipment bases, it delivers tensile strength 400–650MPa, resisting dynamic loads and vibration. Hot rolling enhances material toughness and dimensional accuracy, ensuring seamless welding compatibility with MIG/TIG/arc methods. The optimized H-shape distributes stress evenly, minimizing deformation under pressure. Factory-direct pricing eliminates middleman costs, making it a cost-effective choice for bulk orders of universal structural components.




















