Structural Pipe
Structural tubes from pandapipe that can be made in square/rectangular/round shapes etc.
Known for its strength and durability. With ASTM A53/ASTM A500 multiple standards for your choice.
Structural Pipe
Structural tubes are generally made of carbon steel and possess high strength and elasticity. It is generally used in heavy industries, such as: infrastructure, shipping, brewing and so on. Not only that, structural pipe with his strong pressure resistance, whether it is pier piling, road casing, or fence construction.
In particular, the structural pipes manufactured by Pandapipe can be ordered with confidence, as they comply with strict international standards.
Structural Pipe Standards
Structural pipe can use multiple standards depending on the region it is located in. The Americas can follow ASTM A53 or ASTM A500. Europe can follow the EN 10219 standard. Domestic can follow: GB/T3091 GB/T13793 GB/T 6728 three standards. Here are some links to the standards, specific dimensions and chemical properties, you can view through the link. If there is any question, you can contact us!

ASTM A53
The ASTM A53 standard is one of the most extensively used carbon steel pipe material standards in the oil & gas, structures

ASTM A500
we specialize in the production and export of ASTM A500 ractangular tubes standardized Hollow Sections.

EN 10219
EN 10219 sections available in circular, square, and rectangular shapes for multiple design and architectural needs.
Structural Pipes Standard Size Chart
About the size of the structural steel pipe, we can customize it, if you have any requirements you can send us an email, the first time to reply you!
And Pandapipe’s structural pipes can be made into galvanized structural pipes and also have structural pipe fittings/ 1 inch structural pipe fittings/ 3 4 structural pipe/ 3 4 structural pipe fittings.
| DN | O. D. | W. T. | |||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Inch | mm | SCH5S | SCH10S | SCH10 | SCH20 | SCH30 | SCH40 | SCH60 | SCH80 | SCH100 | SCH120 | SCH140 | SCH160 | Sth | XS | XXS | |
| 50 | 2″ | 60.3 | 1.65 | 2.77 | – | – | – | 3.91 | – | 5.54 | – | – | – | 8.74 | 3.91 | 5.54 | 11.07 |
| 65 | 2 1/2″ | 73 | 2.11 | 3.05 | – | – | – | 5.16 | – | 7.01 | – | – | – | 9.53 | 5.16 | 7.01 | 14.02 |
| 80 | 3″ | 88.9 | 2.11 | 3.05 | – | – | – | 5.49 | – | 7.62 | – | – | – | 11.13 | 5.49 | 7.52 | 15.24 |
| 90 | 3 1/2″ | 101.6 | 2.11 | 3.05 | – | – | – | 5.74 | – | 8.08 | – | – | – | – | 5.74 | 8.08 | – |
| 100 | 4″ | 114.3 | 2.11 | 3.05 | – | – | – | 6.02 | – | 8.58 | – | 11.13 | – | 13.49 | 6.02 | 8.56 | 17.12 |
| 125 | 5″ | 141.3 | 2.77 | 3.4 | – | – | – | 6.55 | – | 9.53 | – | 12.7 | – | 15.88 | 6.55 | 9.53 | 18.05 |
| 150 | 6″ | 168.3 | 2.77 | 3.4 | – | – | – | 7.11 | – | 10.97 | – | 14.27 | – | 18.26 | 7.11 | 10.97 | 21.95 |
| 200 | 8″ | 219.1 | 2.77 | 3.76 | – | 6.35 | 7.04 | 8.18 | 10.31 | 12.7 | 15.09 | 18.26 | 20.62 | 23.01 | 8.18 | 12.7 | 22.23 |
| 250 | 10″ | 273.1 | 3.4 | 4.19 | – | 6.35 | 7.8 | 9.27 | 12.7 | 15.09 | 18.26 | 21.44 | 25.4 | 28.58 | 9.27 | 12.7 | 25.4 |
| 300 | 12″ | 323.9 | 3.96 | 4.57 | – | 6.35 | 8.38 | 10.31 | 14.27 | 17.48 | 21.44 | 25.4 | 28.58 | 33.32 | 9.53 | 12.7 | 25.4 |
| 350 | 14″ | 355.5 | 3.96 | 4.78 | 6.35 | 7.92 | 9.53 | 11.13 | 15.09 | 19.05 | 23.83 | 27.79 | 31.75 | 35.71 | 9.53 | 12.7 | – |
| 400 | 16″ | 406.4 | 4.19 | 4.78 | 6.35 | 7.92 | 9.53 | 12.7 | 16.66 | 21.44 | 26.19 | 30.96 | 36.53 | 40.49 | 9.53 | 12.7 | – |
| 450 | 18″ | 457.2 | 4.19 | 4.78 | 6.35 | 7.92 | 11.13 | 14.27 | 19.05 | 23.83 | 39.36 | 34.93 | 39.67 | 45.24 | – | – | – |
| 500 | 20″ | 508 | 4.78 | 5.54 | 6.35 | 9.53 | 12.7 | 15.09 | 20.62 | 26.19 | 32.54 | 38.1 | 44.45 | 50.01 | – | – | – |
| 550 | 22″ | 558.8 | 4.78 | 5.54 | 6.35 | 9.53 | 12.7 | – | 22.23 | 28.58 | 34.93 | 41.28 | 47.63 | 53.98 | – | – | – |
| 600 | 24″ | 609.6 | 5.54 | 6.35 | 6.35 | 9.53 | 14.27 | 17.48 | 24.61 | 30.96 | 38.89 | 46.02 | 52.37 | 59.54 | – | – | – |
How to Select the Right Structural Pipe
In the selection of structural pipe must consider a variety of aspects, such as the shape of the structural pipe / safety / durability /, in addition to consider the working environment of the structural pipe, etc., the following is Pandapipe summarized on the selection of structural pipe considerations, if you still have any questions you can give us a message.
1. Structural pipe material selection: structural pipe can choose carbon steel/stainless steel/aluminum and other materials, but the general piping system used in the carbon steel structural pipe, mainly because of carbon steel’s high strength and high load-bearing capacity, very suitable for structural support. Stainless steel structural pipe is less cost-effective and not suitable for most piping systems, while aluminum structural pipe has low strength and cannot bear too much weight, so these two materials are eliminated from the range of structural pipe.
2. Shape and Size of Structural Tube: Structural Tube can be fabricated in square/round/rectangular shapes and each shape has its own suitable environment. Round shape has better uniformity and can be subjected to uniform forces. Square rectangles should have greater bending strength and are more suitable for use in structural frames. In addition, it is necessary to choose the appropriate wall thickness according to the different force conditions.
3. Norms and standards: you need to select the appropriate norms according to the requirements of the region, Pandapipe has been certified by the Americas/Europe/Australia and other regional standards, and can provide you with the right pipe.
4. Mechanical properties: Yield/tensile strength and ductility should also be taken into account when selecting a structural pipe. This determines the life of the piping system.
5. Coating: Galvanized institutional pipe or other coatings to ensure that the structural pipe can have a longer life when facing special environments.
FAQs about Structural Pipes
Can structural pipes and fluid pipes be shared?
No, structural pipes and fluid pipes are designed for different purposes.
Structural pipes require good pressure-bearing capacity, while fluid pipes need excellent sealing performance. They should not be used interchangeably unless under special circumstances where environmental requirements are not too harsh.
What characteristics should a structural pipe have?
Structural pipes must possess good pressure-bearing capacity to prevent fractures, be convenient to build according to general standards, and be durable to withstand long-term wear and tear.
At PandaPipe, our structural pipes are designed to meet these requirements, ensuring the success of your construction projects.
What are the cost considerations for structural pipes?
Structural pipes must meet specific standards for corrosion resistance and pressure-bearing capacity. If not up to standard, they can be easily damaged.
At PandaPipe, we offer high-quality structural pipes that are cost-effective and meet all necessary standards, ensuring the longevity and safety of your structures.