Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Apr 10, 2026

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GBT706-2016Hot-Rolled-H-Beam.pdf

Product Description



 

Detailed Photos

 

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

 

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

 

 

Product Parameters

 

 

Products: I beam
Grade: Q235,SS400,ASTM A36,s235JR , S335JR
Standard: JIS,GB,EN ,ASTM,DIN,AISI,BS
Length: 6-12m
Flange Thickness: 8mm-64mm
Flange width: 50-400mm
Web thickness: 8-45mm
Web Width: 100mm~900mm
Delivery time: 7-35 weekdays
Payment terms: L/C,T/T
Application: Mechanical&manufacture,Steel structure,Shipbuilding,Bridging,Automobile chassis


 

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

 

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China


 

Normal Size


Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

Model Section Size (mm) Theoretical Weight
(kg/m)
H B S
10 100 68 4.5 11.261
12 120 74 5 13.987
12.6 126 74 5 14.223
14 140 80 5.5 16.890
16 160 88 6 20.513
18 180 94 6.5 24.143
20a 200 100 7 27.929
20b 200 102 9 31.069
22a 220 110 7.5 33.070
22b 220 112 9.5 36.524
24a 240 116 8 37.477
24b 240 118 10 41.245
25a 250 116 8 38.105
25b 250 118 10 42.030
27a 270 122 8.5 42.825
27b 270 124 10.5 47.084
28a 280 122 8.5 43.492
28b 280 124 10.5 47.888
30a 300 126 9 48.084
30b 300 128 11 52.794
30c 300 130 13 57.504
32a 320 130 9.5 52.717
32b 320 132 11.5 57.741
32c 320 134 13.5 62.765
36a 360 136 10 60.037
36b 360 138 12 65.689
36c 360 140 14 71.341
40a 400 142 10.5 67.598
40b 400 144 12.5 73.878
40c 400 146 14.5 80.158
45a 450 150 11.5 80.420
45b 450 152 13.5 87.485
45c 450 154 15.5 94.550
50a 500 158 12 93.654
50b 500 160 14 101.504
50c 500 162 16 109.354
56a 560 166 12.5 106.316
56b 560 168 14.5 115.108
56c 560 170 16.5 123.900
63a 630 176 13 121.407
63b 630 178 15 131.298
63c 630 180 17 141.189

Application And Usage


I Beam is mainly used in automobiles, railway vehicles, shelves, highway guardrails, building steel structures, containers, transmission towers, cable tray, agricultural machinery, furniture, vegetable greenhouses, pipe supports, water retaining and soil retaining maintenance walls and other fields.
Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China
 

Packaging & Shipping

Bridge Construction H-Shape Hot Rolled Carbon Steel H Beam From China

 

 

1.What is H-beam steel?

An H Beam is a steel structure shaped like the letter "H." It is commonly used in construction to support heavy loads and strengthen buildings. This beam has wide flanges and a uniform design, making it suitable for homes, bridges, and industrial projects.

 

2.Which is better, I-beam or H-beam?

H-beams are more efficient than I-beams because they are better at carrying bending and shear loads. H-beams have a thicker, deeper web, which means that they can better support the weight of an object placed on top of them.

 

3.How strong is an H-beam?

Strength and Practical Benefits

The primary strength of H-beams lies in their high capacity-to-weight ratio. This feature enables them to carry large loads with minimal weight, maximising utilisation, resulting in a decrease in the overall construction cost.

 

4.When to use I-beam and H-beam?

I-beams can only be used for beams, while H-beams can be used for load-bearing columns of structures. 7. The flange of I-beam is a variable wearing surface, which is thicker against the web and thinner on the outside; the flange of H-shaped steel is an equal wearing surface.

 

5.What are the advantages of H-beam?

Advantages of H Beam

Enhanced Stability: The wider flanges provide better stability against bending and torsion. Cost-Efficiency: Despite their strength, H beams can often reduce the amount of material needed compared to other types of beams.