En10216 P195gh P235gh P265gh Carbon Steel Tube

Type: Seamless
Technique: Cold Drawn
Material: Carbon Steel
Surface Treatment: Black
Usage: Pipeline Transport, Boiler Pipe, Hydraulic/Automobile Pipe, Machinery Industry, Construction & Decoration, Heat Exchanger Tube
Section Shape: Round
Customization:
Diamond Member Since 2011

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Basic Info.

Model NO.
KM-172018
Standard
En10216
Materials
P195gh,P235gh,P265gh,P355gh
Diameter
21~508mm
Thickness
3~40mm
Application
Boiler Tube,Exchanger Tube,Automobile,Machinery
Package
in Bundle Sleeved with Plastic Bag
Transport Package
Sleeved with Plastic Bag in Bundle
Specification
21~508mm
Trademark
Kingmetal
Origin
China
HS Code
73043110
Production Capacity
2000 Tons Per Month

Product Description

EN10216 P195GH,P235GH,P265GH Carbon SEAMLESS steel tube
Standard:EN 10216-2
Materials: P195GH,P235GH,P265GH,P355GH
Technique:cold drawn,hot-rolled
Usage: boiler mill
Length :   double randon length
Seamless tube Thickness:    3-40mm, welded tube thickness:2mm~10mm
Seamless tube Outer Diameter:    21-508mm,welded tube diameter:21mm~710mm

1. EN10216 P235GH/P265GH/P355GH areEuropean specified steel for use in pressure vessels, boilers and heat exchangers. 
The composition of this steel makes it ideal for applications where elevated working temperatures are the norm and the material is used by fabricators throughout the oil, gas and petrochemical industry

2. En10217-2 P195GH welding Steel pipe/tube is used in high, middle, low pressure boiler and pressure purpose. P195GH welding pipe advantage: 1. P195GH pipes are cut to sections to avoid anti-dumping fax. 2. P195GH pipe can be cut to sections, P195GH pipe blanks, parts did heat treatment and surface treatment are available to export, this can highly lower the cost.

En10217-2 P195GH Welding Steel Pipe Chemical Composition Analysis:
Steel grade C Si Mn P S Cr Mo Ni
Steel name Steel number
En10217-2
 
P195GH
1.0348 ≤0.13 0.35 ≤0.70 0.025 0.020 0.30 ≤0.08 0.30

Chemical Composition of EN P235GH
Element % by mass Element % by mass
Carbon (C) ≤0.16 Silicon (Si) ≤0.35
Manganese (Mn) 0.60 to 1.20 Phosphorous (P) (max) 0.025
Sulphur (S) (max) 0.015 Aluminium (Al) ≤0.020
Nitrogen (N) ≤0.012 Chromium (Cr) ≤0.30
Copper (Cu) ≤0.30 Molybdenum (Mo) ≤0.08
Niobium (Nb) ≤0.020 Nickel (Ni) ≤0.30
Titanium (Ti) (max) 0.03 Vanadium (Vi) ≤0.02

The combined quantities of Chromium, Copper and Molybdenum should not exceed 0.70% 

Chemical Composition of P265GH
Element % by mass Element % by mass
Carbon (C) ≤0.20 Silicon (Si) ≤0.40
Manganese (Mn) 0.80 to 1.40 Phosphorous (P) (max) 0.025
Sulphur (S) (max) 0.015 Aluminium (Al) ≤0.020
Nitrogen (N) ≤0.012 Chromium (Cr) ≤0.30
Copper (Cu) ≤0.30 Molybdenum (Mo) ≤0.08
Niobium (Nb) ≤0.020 Nickel (Ni) ≤0.30
Titanium (Ti) (max) 0.03 Vanadium (Vi) ≤0.02
The combined quantities of Chromium, Copper and Molybdenum should not exceed 0.70% 

Chemical Composition of P355GH
Element % by mass Element % by mass
Carbon (C) 0.10 to 0.22 Silicon (Si) ≤0.60
Manganese (Mn) 1.10 to 1.70 Phosphorous (P) (max) 0.025
Sulphur (S) (max) 0.015 Aluminium (Al) ≤0.020
Nitrogen (N) ≤0.012 Chromium (Cr) ≤0.30
Copper (Cu) ≤0.30 Molybdenum (Mo) ≤0.08
Niobium (Nb) ≤0.020 Nickel (Ni) ≤0.30
Titanium (Ti) (max) 0.03 Vanadium (Vi) ≤0.02

The combined quantities of Chromium, Copper and Molybdenum should not exceed 0.70% 
 

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