ERW Rectangular Pipe | Electric Resistance Welded Rectangular Tube | Structural & Mechanical Applications

PRODUCT PARAMETERS

  • Type: ERW Rectangular Pipe
  • Size Range: 10×20 mm to 400×600 mm, WT 0.8–20 mm
  • Surface: Black / Pre‑galvanized / Hot‑dip galvanized
  • Applications: Structural, mechanical, and fabrication uses
  • Key Feature: High dimensional accuracy & smooth surface

Description
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Description

🟦 Product Overview

ERW Rectangular Pipe is produced by forming steel strip into a rectangular shape and welding the seam using high‑frequency resistance welding (HFW). It is widely used in:

  • Structural engineering
  • Construction frameworks
  • Mechanical fabrication
  • Furniture manufacturing
  • Automotive components
  • General engineering applications

ERW rectangular tubes offer:

  • High dimensional accuracy
  • Smooth internal and external surfaces
  • Uniform wall thickness
  • Excellent weldability and formability

They are one of the most commonly used structural hollow sections for modern construction and mechanical systems.

🟦 Standards

  • ASTM A500 (Grade A/B/C)
  • EN 10219 (S235 / S275 / S355)
  • GB/T 6728 (Cold‑formed structural tubes)
  • BS 1387
  • ASTM A53 (for non‑critical applications)

🟦 Grades

  • Q195 / Q215 / Q235
  • Q345 (high strength)
  • S235 / S275 / S355
  • ASTM A500 Grade A/B/C

🟦 Product Specifications & Available Sizes

Outer Size (Height × Width)

  • 10×20 mm to 400×600 mm

Wall Thickness (WT)

  • 0.8–20 mm

Length

  • 6 m / 12 m / custom

End Types

  • Plain End
  • Beveled End

Surface Options

  • Black
  • Pre‑galvanized
  • Hot‑dip galvanized
  • Oiled
  • Varnish coated
Rectangular Pipe10*20-75*450.24-0.31
10*20-75*450.33-0.38
10*20-75*450.40-2.0
10*20-75*450.24-0.31
10*20-75*450.33-0.38
10*20-75*450.40-2.0

🟦 Chemical Composition

(Example: Q235 / S235)

Q235

ElementContent (%)
C≤ 0.22
Mn≤ 1.40
Si≤ 0.35
P≤ 0.045
S≤ 0.045

S235

ElementContent (%)
C≤ 0.22
Mn≤ 1.60
Si≤ 0.55
P≤ 0.040
S≤ 0.040

🟦 Mechanical Properties

Q235

PropertyRequirement
Tensile Strength375–500 MPa
Yield Strength≥ 235 MPa
Elongation≥ 26%

S235

PropertyRequirement
Tensile Strength360–510 MPa
Yield Strength≥ 235 MPa
Elongation≥ 26%

🟦 Physical Properties

PropertyValue
Density7.85 g/cm³
Thermal Conductivity45–60 W/m·K
MagneticYes

🟦 Manufacturing Processes

  • High‑frequency ERW welding
  • Sizing & shaping
  • Straightening
  • Annealing (optional)
  • Galvanizing (optional)
  • Hydrostatic testing
  • Eddy current testing

🟦 Primary Industry Usage

  • Structural frameworks
  • Construction and building systems
  • Mechanical fabrication
  • Furniture manufacturing
  • Automotive components
  • General engineering applications

🟦 Why Use ERW Rectangular Pipe

  • High dimensional accuracy
  • Excellent weldability and formability
  • Smooth surface for fabrication
  • Cost‑effective structural solution
  • Available in black and galvanized finishes

🟦 Why Choose Jaron Steel

  • Full size range of ERW rectangular tubes
  • Black, pre‑galvanized, and hot‑dip galvanized options
  • MTC 3.1 + third‑party inspection
  • Export‑grade packaging & loading supervision
  • Competitive pricing for construction and engineering projects

International Standards

ChinaAmericaGermanyJapan FranceBritainInternational
GB3077AlSI    DINJISNEBSISO
20Mn21320122120Mn5SMn2120M5150M19–
30Mn2133030Mn5SMn2432M5150M28–
35Mn2133536Mn5SMnl35M5150M36–
40Mn213401341–SMn240M5––
45Mn2134546Mn7SMn345M5––
50Mn2105250Mn7–55M5––
20MnV–20MnV6– ––
30Mn2MoW–—– ––
27SiMn–27MnSi5– ––
35SiMn–37MnSi5–38MS5––
42SiMn–38MnSi446MnSi4–38MS5––
20SiMn2MoV––––––
25SiMn2MoV––––––
37SiMn2MoV––––––
40B14B3535B2––––
45B50B46H45B2––––
50B14B50–––––
4OM∏B15B41–––––
45MnB15B4850B44–––––
20Mn2B––––––
20MnMoB80B20–––––
15MnVB––––––
–––––––
–––––––
20MnVB––––––
40MnVB––––––
20MnTiB––––––
25MnTiBRE––––––
2OSiMnVB––––––
15Cr5015511515Cr3SCr2112C3523A14523M15–
15CrA––––––
20Cr512020Cr4SCr2218C318C4527A19527M20683/1120Cr420CrS4
30Cr513028Cr4SCr228C432C4530A30530A32–
35Cr513534Cr437Cr4SCr338C4530A36683/83、 3a、 3b
40Cr514038Cr441Cr4SCr442C4530A40530M40683/14、 4a^ 4b
45Cr514542Cr4SCR545C4––
50Cr51505152––50C4En48–
38CrSi––––––
12CrMo411913CrMo44–12CD415CD2––
15CrMoASTMA-387Gr. B15CrMo516CrMo44SCM2115CD4. 05BS1653–
20CrMo411820CrMo522CrMo4SCM2218CD420CD4CDS 12CDSllO–
30CrMo413025CrMo4SCM230CD4CDS 13–
30CrMoA–32CrMol23ICRMo12––––
35CrMo4135413734CrMo435CrMo4SCM335CD478A37683/1C35eaC35eb
42CrMo4140414241CrMo442CrMo4SCM440CD442CD4708M40708A42709M40683/13
12CrMoV––––––
35CrMoV–35CrMoV5––––
12CrlMoV–13CrMoV4.2––––
25Cr2MoVA–24CrMoV5.5––––
25Cr2MolVA––––––
20CR3MoWVA–21CrVMoW12––––
38CrMoΛl6370 (ΛMS)34CrAlMo541CrAlMo7SACM64540CAD6.12905M39683/1041CrAlMo74
20CrV612022CrV4–22CrV4––
40CrV614042CrV–42CrV4––
50CrVA615050CrV4SUPlO50CV4735A50–
15CrMn–16MnCr5–16MC5––
20CrMn512020MnCr5SMC2120MC5––
40CrMn5140–SMC3–––
20CrMnSi–– –––
25CrMnSi––SMKl–––
30CrMnSi––––––
30CrMnSiA––––––
35CrMnSiA––SMK2–––
20CrMnMo411920CrMo5SCM23–––
40CrMnMo4140–––––
20CrMnTi––SMK22–––
30CrMnTi–30MnCrTi4––––
20CrNi312020NiCr6–20NC6637A16637M17–
40CrNi3140    46NiCr6SNCl35NC6640A35640M40–
45CrNi314545NiCr6––––
50CrNi3150–––––
12CrNi2311514NiCrlOSNC21IONCll14NC11––
12CrNi3331013NiCrl2SNC2210NC1214NC12655A12655M13–
20CrNi3–22NiCrl4–20NC11––
30CrNi3–28NiCrlO31NiCrl4SNC230NC1130NC12––
37CrNi3–35NiCrl8SNC335NC15––
12Cr2Ni4E331014NiCrl8–12NC15––
20Cr2Ni4E331622NiCrl4–20NC14659A15659M15–
20CrNiMo8620    8720     20NiCrMo221NiCrMo2–20NCD2805A20805M20–
40CrNiMoA4340     9840     36NiCrMo440NiCrMo6SNCM835NCD540NCD3817M40816M40–
45CrNiMoVA4437     –SNCM9–––
18Cr2Ni4WA      
25Cr2Ni4WA      

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