Download the Latest HEA HEB STEEL BEAM Specifications and Dimensions.
High Strength European H Beam Steel HEA / HEB / HEM – EN S235JR Hot Rolled Structural Profiles
| Item | Details |
| Material Standard | S235JR |
| Yield Strength | ≥ 235 MPa |
| Dimensions | HEA 100–HEM 1000; HEA 120×120–HEM 1000×300, etc. |
| Length | Standard 6 m & 12 m; custom lengths available |
| Dimensional Tolerance | In accordance with EN 10034 / EN 10025 |
| Quality Certification | ISO 9001; SGS / BV third-party inspection available |
| Surface Finish | Hot-rolled, painted, or hot-dip galvanized (optional) |
| Applications | Industrial plants, warehouses, commercial & residential buildings, bridges |
Technical Data
EN S235JR HEA/HEB/HEM Chemical Composition
| Steel grade | Carbon, % max | Manganese, % max | Phosphorus, % max | Sulfur, % max | Silicon, % max | Notes |
| S235JR | 0.17 | 1.4 | 0.035 | 0.035 | 0.035 | Copper content can be added upon request; suitable for general structural applications. |
EN S235JR HEA/HEB/HEM Mechanical Property
| Steel Grade | Tensile Strength, ksi [MPa] | Yield Point min, ksi [MPa] | Elongation in 8 in. [200 mm], min, % | Elongation in 2 in. [50 mm], min, % |
| S235JR | 55–70 [380–480] | 34 [235] | 20 | 21 |
ASTM Wide Flange H-beam Sizes - W Beam
| Designation | G Kg/m | h mm | b mm | tw mm | tf mm | r mm | A mm² x10² | hi mm | d mm | Ø | Pmin mm | Pmax mm | AL m²/m | AG m²/t |
| HE 100 AA* | 12,2 | 91 | 100 | 4,2 | 5,5 | 12 | 15,6 | 80 | 56 | M10 | 54 | 58 | 0,553 | 45,17 |
| HE 100 A | 16,7 | 96 | 100 | 5 | 8 | 12 | 21,2 | 80 | 56 | M10 | 54 | 58 | 0,561 | 36,68 |
| HE 100 B | 20,4 | 100 | 100 | 6 | 10 | 12 | 26,0 | 80 | 56 | M10 | 56 | 58 | 0,567 | 27,76 |
| HE 100 C* | 30,9 | 110 | 103 | 9 | 15 | 12 | 39,3 | 80 | 56 | M10 | 59 | 61 | 0,593 | 19,23 |
| HE 100 M | 41,8 | 120 | 106 | 12 | 20 | 12 | 53,2 | 80 | 56 | M10 | 62 | 64 | 0,619 | 14,82 |
| HE 120 AA* | 14,6 | 109 | 120 | 4,2 | 5,5 | 12 | 18,6 | 98 | 74 | M12 | 58 | 68 | 0,669 | 45,94 |
| HE 120 A | 19,9 | 114 | 120 | 5 | 8 | 12 | 25,3 | 98 | 74 | M12 | 58 | 68 | 0,677 | 34,06 |
| HE 120 B | 26,7 | 120 | 120 | 6,5 | 11 | 12 | 34,0 | 98 | 74 | M12 | 60 | 68 | 0,686 | 25,71 |
| HE 120 C* | 39,2 | 130 | 123 | 9,5 | 16 | 12 | 49,9 | 98 | 74 | M12 | 63 | 72 | 0,712 | 18,19 |
| HE 120 M | 52,1 | 140 | 126 | 12,5 | 21 | 12 | 66,4 | 98 | 74 | M12 | 66 | 74 | 0,738 | 14,16 |
| HE 140 AA* | 18,1 | 128 | 140 | 4,3 | 6 | 12 | 23,0 | 116 | 92 | M16 | 64 | 76 | 0,787 | 43,53 |
| HE 140 A | 24,7 | 133 | 140 | 5,5 | 8,5 | 12 | 31,4 | 116 | 92 | M16 | 64 | 76 | 0,794 | 32,21 |
| HE 140 B | 33,7 | 140 | 140 | 7 | 12 | 12 | 43,0 | 116 | 92 | M16 | 66 | 76 | 0,805 | 23,88 |
| HE 140 C* | 48,2 | 150 | 143 | 10 | 17 | 12 | 61,5 | 116 | 92 | M16 | 69 | 79 | 0,831 | 17,22 |
| HE 140 M | 63,2 | 160 | 146 | 13 | 22 | 12 | 80,6 | 116 | 92 | M16 | 72 | 82 | 0,857 | 13,56 |
| HE 160 AA* | 23,8 | 148 | 160 | 4,5 | 7 | 15 | 30,4 | 134 | 104 | M20 | 76 | 84 | 0,901 | 37,81 |
| HE 160 A | 30,4 | 152 | 160 | 6 | 9 | 15 | 38,8 | 134 | 104 | M20 | 78 | 84 | 0,906 | 29,78 |
| HE 160 B | 42,6 | 160 | 160 | 8 | 13 | 15 | 54,3 | 134 | 104 | M20 | 80 | 84 | 0,918 | 21,56 |
| HE 160 C* | 59,2 | 170 | 163 | 11 | 18 | 15 | 75,4 | 134 | 104 | M20 | 84 | 88 | 0,944 | 15,95 |
| HE 160 M | 76,2 | 180 | 166 | 14 | 23 | 15 | 97,1 | 134 | 104 | M20 | 86 | 90 | 0,970 | 12,74 |
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| Dimension | Typical Range | Tolerance (EN 10034 / EN 10025) | Remarks |
| Height H | 100 – 1000 mm | ±3 mm | Customizable |
| Flange Width B | 100 – 300 mm | ±3 mm | — |
| Web Thickness t_w | 5 – 40 mm | ±1 mm or ±10% (greater applies) | — |
| Flange Thickness t_f | 6 – 40 mm | ±1 mm or ±10% (greater applies) | — |
| Length L | 6 – 12 m | ±12 mm (6 m) / ±24 mm (12 m) | Adjustable by contract |
Dimension Customization: H (100–1000mm), B (100–300mm), t_w (5–40mm) and t_f (6–40mm) can be individualized; cut to length is available.
Processing Customization: Drilling, end treatment and prefabricated welding are acceptable. Beveling, grooving, welding, machining services are available to satisfy connection requirements.
Surface Treatment Customization: Galvanized, Painted/Epoxy coated, Sandblasted, Original Surface Finish and Other special surface finish. The choice is based on the service environment and the performance requirements of the corrosion protection.
Marking & Packaging Customization: Special marking (with project ID or specs) is available; packaging can be customized for flatbed or container shipping.
Application in Building:
They are employed when they act as beams and columns for office and residential buildings, shopping centres and as primary beam or crane beam in factories and warehouses.
Bridge Engineering:
Utilized for small to medium spans in highway, railway, pedestrian bridges.
Municipal & Special Projects:
Offers structural support for subway stations, utility corridors, tower crane foundations, and temp enclosures.
Industrial Plant Support:
In this capacity, they serve as the principal structural components for the stability of the plant building by withstanding the vertical and horizontal forces.
1) Branch Office - Spanish-speaking support, customs clearance assistance, etc.
2) Over 5,000 tons of stock in stock, with a wide variety of sizes
3) Inspected by authoritative organizations such as CCIC, SGS, BV, and TUV, with standard seaworthy packaging
Packaging:
Standard Export Packaging: Beams are securely bundled with steel straps and reinforced wooden supports to prevent movement or damage during transit.
Protective Measures: Optional waterproof covers or tarpaulins are applied to protect the surface from moisture, dust, and corrosion.
Labeling & Identification: Each bundle is labeled with material grade, dimensions, and project information for easy on-site identification.
Transportation:
Handling: Beams are loaded and unloaded using cranes or forklifts to ensure safety and prevent deformation.
Shipping Options: Suitable for sea, road, and rail transport. For long-distance or overseas shipping, anti-rust coatings and protective wrappings are recommended.
Delivery Assurance: Royal Steel Group ensures timely delivery with careful handling throughout the logistics process.
Stable cooperation with shipping companies such as MSK, MSC, COSCO efficiently logistics service chain, logistics service chain are we to your satisfaction.
We follow the standards of quality management system ISO9001 in all procedure, and have strict control from packaging material purchase to transport vehicle scheduling. This guarantees the H-beams from the factory all the way to the project site, helping you build on a solid foundation for a trouble free project!
1. What is EN S235JR steel?
EN S235JR is a European standard structural steel grade according to EN 10025. It is widely utilized for hot-rolled structural steel products such as HEA HEB and HEM beams. The “S235” means the minimum yield strength is 235MPa, and “JR” means this steel grade has a minimum impact energy of 27 J in room temperature.
2. What is HEA, HEB, HEM beam?
HEA Beams: Medium load light wide flange beam with thin flanges.
HEB Beams: Heavier profiles with thicker flanges, suitable for more demanding applications.
HEM Beams: heaviest-profile beams with maximum flange thickness, used for extremely heavy structures or long-span frameworks.
3. What are the main mechanical indicators of EN S235JR H beam?
Yield Strength: ≥ 235 MPa
Tensile Strength: 360–510 MPa
Elongation: ≥ 26% for thickness ≤ 16 mm
Impact energy (Charpy V): 27 J at 20°C (for JR grade) These features guarantee a host of reliability aspects in structural applications.
4. What are typical dimensions and sizes?
HEA beams: Heights 100-1000 mm,flange thickness flatter than HEB.
HEB beams: Heights 100-1000 mm, thicker flanges for greater load carrying capacity. HEM beams: Height 100–1000 mm, maximum flange and web thickness.
Note: The exact measurements conform to the EN 10365 / EN 10034 standards.
5. What are the typical uses of HEA/HEB/HEM beams? Warehouses and industrial buildings
Bridges and viaducts
Multi-storey building frames
Support of machines and cranes
Strengthening of existing buildings
6. How to choose between HEA, HEB and HEM?
Choose the light section HEA for minimum weight, modest load and cost effective design.
Choose HEB for high load-bearing capacity, large span or important structural application.
Choose HEM for very heavy sections, high bending moments and/or long-span structures.
7. Can EN S235JR beams be welded?
Yes. EN S235JR beams can be welded by the normal welding method(MIG welding,TIG welding,arc welding). Preheating is advised to prevent cracking when welding thick plates.
8. Can EN S235JR beams be used outdoors?
Yes, but if you want long term durability, you need to protect the surface like this.
Hot-dip galvanizing
Epoxy or polyurethane painting
Weatherresistant coatings are JIS A 6909-compliant.
9. How are HEA/HEB/HEM beams delivered?
Growing lengths: 2–12 mins (bespoke lengths available)
Shielded with packing included cushions and steel binding around the box
Plastic or metal end caps can be used to seal beam ends
Dispatched to International shipping norms
10. Where can I find good quality EN S235JR H beam?
A full range of HEA, HEB and HEM beams is available from suppliers such as Royal Steel Group – with numerous sizes and grades, CE and compliance to EN 10025 and other global quality standards.
Contact Details
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Kangsheng development industry zone,
Wuqing district, Tianjin city, China.
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