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SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing

SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing

Brand Name: Torich
Model Number: SAE J526
MOQ: 5tons
Price: 2000-5000USD/ton
Payment Terms: L/C, T/T
Supply Ability: 50000tons per year
Detail Information
Place of Origin:
China
Certification:
ISO9001
Standard:
SAE J526
Material:
UNS G10080 Or UNS G10100
Manufacture:
Cold Drawn Welded Tube
Application:
Automotive,refrigeration,hydraulic
Section Shape:
Round
Secondary Or Not:
Non-secondary
Length:
6M Or As Requirement
Packaging Details:
In bundles or in wooden boxes packaging
Supply Ability:
50000tons per year
Highlight:

precision seamless pipe

,

precision pipes and tubes

Product Description

SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing


SAE J526 welded single-wall low-carbon steel tubing intended for general automotive,refrigeration,hydraulic, and other similar applications requiring tubing of a quality suitable for bending,flaring,beading,forming,and brazing.
 
Technical Standard: SAE J526.
Wall thickness: 0.5-15mm
Diameter: 1-100mm
LengthMax 12000mm, Upon customer request
Application :General automotive,refrigeration,hydraulic, and other similar applications

Material / Grade: UNS G10080 or UNS G10100
 

Produce method:

The tubing shall be made from a single strip of steel shaped into a tubular form,the edges of which are joined and sealed by a suitable welding process.After welding,the bead shall be removed from the outside to provide a smooth round surface and the tubing shall be processed in such a manner as to produce a finished product which meet all requirements of this document.Typically this type of tubing is available in both coiled and straight condition.Straightness requirements should be agreed upon between supplier and purchasing 

 

Steel Grade and Chemical Compositions
Steel Grade C Si Mn P S
max max max max max
UNS G10080 0.1 0.07-0.6 0.30-0.50 0.03 0.05
UNS G10100 0.08-0.13 0.07-0.6 0.30-0.60 0.03 0.05

 

MECHANICAL REQUIREMENTS
Properties Values
Yield Strength, min (0.2% offset) 170 MPa
Tensile Strength, min 290 MPa
Elongation in 50 mm 14% min
Hardness (Rockwell 30 T scale), max 65

 

TUBING DIMENSIONS AND TOLERANCES

Dash

Size

Nominal

Tubing

OD

mm

Outside

Diameter (2)

Basic

mm

Outside

Diameter (2)

Tolerance

±mm

Wall

Thickness (3)(4)

basic

mm

Wall

Thickness (3)

Tolerance

±mm

−2 3.18 3.18 0.05 0.64 0.13
−3 4.76 4.76 0.08 0.71 0.13
−4 6.35 6.35 0.08 0.71 0.08
−5 7.94 7.92 0.08 0.71 0.08
−6 9.53 9.53 0.08 0.71 0.08
−7 11.11 11.13 0.10 0.76 0.08
−8 12.70 12.70 0.10 0.76 0.08
−8 12.70 12.70 0.10 0.89 0.09
−9 14.29 14.27 0.10 0.76 0.08
−10 15.88 15.88 0.10 0.89 0.09

 

1. Other sizes may be specified by agreement between the supplier and the user.
2. The actual outside diameter shall be the average of the maximum and minimum
outside diameters as determined at any one cross section through the tubing.
3. The tolerances listed represent the maximum permissible deviation at any point.
4. For intermediate wall thickness, the tolerance for the next heavier wall thickness
shall apply.

 

Tubing End Condition—

The tubing will be produced using normal mill cut-off practices. This will include, butis not limited to single-cut ends, double-cut ends, saw-cut, and rotary-cut ends. Care will be taken to minimizethe distortion of the tube ends. Ends that require further processing will be by agreement between theproducer and tube purchaser.

 

Surface Finish—

Surface imperfections such as handling marks, die marks, or shallow pits shall not beconsidered injurious defects provided such imperfections are not detrimental to the function of the tubing andthese imperfections are within the tolerances specified for diameter and wall thickness. The removal of suchsurface imperfections is not required. A slight weld bead and splatter on the inside surface shall bepermissible but must be held to the minimum consistent with good welding practice. Special weld beadrequirements must be agreed upon at time of purchase.
 
Relevant standard : SAE J1677-Tests and procedures of SAE Low-Carbon steel and Copper Nickel Tubing

Hardness Test—SAE J1677— 5.6
Bending Test—SAE J1677—5.3
Pressure Proof Test—SAE J1677—5.8
Nondestructive Electric Test—SAE J1677—5.9
Flattening Test—SAE J1677—5.1
Expansion Test—SAE J1677—5.4
Tensile Test—SAE J1677—5.7
 

SAE J409-Product Analysis –Premissible Variations from Specified Chemical Analysis of a Heat or Cast of steel


SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing 0    SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing 1
 
SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing 2    SAE J526 UNS G10080 / UNS G10100 Cold Drawn Welded Low Carbon Steel Single-Wall Tubing 3

 

 

 

Reference Standards:

SAE J409—Product Analysis-Permissible Variations from Specified Chemical Analysis of a Heat or Cast of Steel
SAE J514—Hydraulic Tube Fittings
SAE J516—Hydraulic Hose Fittings
SAE J533—Flares for Tubing
SAE J1065—Pressure Ratings for Hydraulic Tubing and Fittings
SAE J1290—Automotive Hydraulic Brake System—Metic Tube Connection
SAE J1453—O-Ring Face Seal
SAE J1677—Tests and Procedures for SAE Low-Carbon Steel and Copper Nickel Tubing