| Place of Origin | China |
| Standard | GB |
| Technique | ERW |
| Grade | Q195GB/ASTM Gr.D/Q215/Q235/S25JR/S275JR/S355JR ... |
| Delivery Time | 8-14 days |
| Brand Name | hongye |
| Application | Fluid Pipe, Boiler Pipe, Drill Pipe, Hydraulic Pipe, Gas Pipe, OIL PIPE, Chemical Fertilizer Pipe, Structure Pipe, Other |
| Thickness | 1.6-14mm |
| Certificate | ISO9001 |
| Processing Service | Welding, Punching, Cutting, Bending, Decoiling |
| Shape | Round Pipe Tube |
| Material | Q235,Q235B,S275,S275jr,A53,ST37,etc |
| Technology | Cold Rolled.hot Rolled |
| Length: | 6m/12m or customized |
| Application: | Fluid Pipe, Fluid transport and construction |
| Outer Diameter | 219 - 2020 mm, 219mm--2020mm |
| Surface: | black painted or others |
| Grade: | 45#, Q235, Q345, Q195, 10#-45#, Q195-Q345 |


1.What is H shape steel?
H-section steel beams are a type of structural steel beam with a cross-section that resembles the letter "H." H-Sections have equal web and flange thicknesses. They are made of rolled steel and are available in a variety of sizes and strengths.
2.Which is stronger, H or I beam?
H-beam: An H-beam has a thicker center web, which means it is often stronger. I-beam: An I-beam often has a thinner center web, which means it is often not able to take as much force as an h-beam.
3.Are H-beam and I beam the same?
The main difference between these two types of beams is their shape. An "I" beam has a triangular cross-section, while an "H" beam has a rectangular one (hence the name). Another difference between them is that an "H" beam is usually longer than an "I" beam of similar size and weight capacity.
4.What are H-beams used for?
H-beams often bear the main structural loads and are used in: Vertical Columns: Providing the foundational framework for high-rise buildings. Primary Girders: Distributing loads across long spans in bridge construction. Main Framework: Forming the backbone of industrial platforms and crane runways.
5.What is type H steel?
"H" grades are high carbon stainless steel grades, having improved strength at high temperatures - generally above 500°C. These high carbon grades have high short-term and long-term creep strength. They are usually produced in the form of pipe and plate.



















