ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube

Product Details
Customization: Available
Type: Copper Pipe
Standard: ASTM, AISI, GB, JIS, DIN, EN
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  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
  • ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
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  • Overview
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  • Processing of Production
Overview

Basic Info.

Model NO.
Copper Alloy Seamless Condenser Tube
Grade
T1, T2, T3, C1100, C1010, H59, H58, etc.
Certification
ISO, RoHS, IBR, AISI, ASTM, GB, EN, DIN, JIS
Shape
Round/Customized
Technique
Forged/ Hot Press
Surface Treatment
Smooth/as Per Client′s Design
ASTM Standard
B153/170/224/53/54/62/75
Length
10mm-12000mm
Process
Bending, Decoiling, Welding, Punching, Cutting
Diameter
4mm, 6mm, 8mm, 10mm, 12mm, 15mm, 18mm, 22mm, 28mm,
End
Plain End/Bevel End
Test
BV, SGS Is Available
Processing
Customized
Wall Thickness
1mm~220mm (Sch5X~Sch Xxs)
Used
Factory, Decoration, Food
Packing
Standard Sea Worthy Package
Delivery Time
10-30 Working Days
MOQ
1 Ton
Application
Building, Sanitation, Seawater Desalination
Technical
Hot Rolled/Cold Drawn
Outside Diameter
8mm, 10mm, 12mm, 15mm, 18mm, 28mm, 35mm, 42mm, etc
Transport Package
Woven Bag/Wooden Case
Specification
Brass/Copper
Trademark
EZS
Origin
China
Production Capacity
10000 Ton/Year

Product Description

 

Product Name

ASME SB111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube

Size

 

Outside Diameter

2-914mm

Thickness

1mm~220mm (Sch5X~Sch XXS)

Max Length

1-50m

Surface

Polished,Yellow,Red

Process

Cold drawn, Hot Rolled

Usage

Gas Industry, Oilfield, Thermal power, Oil industry, Shipbuilding, Petrochemical, Tanker, Nuclear , etc

Surface

Pickling and annealing,pickling and annealing+polishing+ EP(Electricity polish)

End

Plain, Beveled with caps

Processing Service

Bending, Decoiling, Welding, Punching, Cutting

Certificate

ISO9001/2000

Standard

GB/T 19849-2005, EN 1254-1, ASTM B88M, BS EN1254, DIN 2856, etc.

Payment:

L/C at sight, L/C 180 days, T/T, D/P, OA, Western Union, 

Port of Shipment

Shanghai port in China

 

Short Description:
This specification establishes the reguirements for seamless tube and ferrule stock of copper and various copper alloys of a specified range of diameters, for use in surface condensers, evaporators and heat exchangers.

The specified coppers and copper alloys are UNS No. C10100,C10200,C10300,C10800,C12000,C12200,C14200,C19200,C23000,C28000,C44300,C44400,
C44500,C60800,C61300,C61400,C68700,C70400,C70600,C70620,C71000,C71500, C71520,C71640 and C72200. The product shall be produced by processes such as casting, extrusion, drawing, annealing, straightening, trimming, and other processes which may produce a seamless tube in the specified condition. The coppers and copper alloys shall be specifically furnished in any one of the following tempers.: annealed, light-drawn, hard-drawn, or hard drawn and end annealed. Tubes for ferrule stock shall be annealed sufficiently to be fully crystallized.

Some tubes are suggested to be subjected to a stress-relieving thermal treatment subsequent to
straightening. The products shall be subjected to expansion, flattening, and residual stress tests
The tensile and expansion requirements for the products are specified in accordance with the
temper desianation. The products shall also be subjected to mercurous nitrate, ammonia vapor.
Eddy-current, hydrostatic, and pneumatic tests.

 

 

ASTM Standards:

  • B153 Test Method for Expansion (Pin Test) of Copper and Copper-Alloy Pipe and Tubing.
  • B154 Test Method for Mercurous Nitrate Test for Copper and Copper Alloys.
  • B170 Specification for Oxygen-Free Electrolytic Copper Refinery Shapes.
  • B224 Classification of Coppers.
  • B846 Terminology for Copper and Copper Alloys.
  • B858 Test Method for Ammonia Vapor Test for Determining Susceptibility to Stress Corrosion Cracking in Copper Alloys.
  • E8 Test Methods for Tension Testing of Metallic Materials E 8M Test Methods for Tension Testing of Metallic Materials [Metric].
  • E29 Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications.
  • E53 Test Methods for Determination of Copper in Unalloyed Coppers by Gravimetry.
  • E54 Test Methods for Chemical Analysis of Special Brasses and Bronzes.
  • E62 Test Methods for Chemical Analysis of Copper and Copper Alloys (Photometric Methods.
  • E75 Test Methods for Chemical Analysis of Copper-Nickel and Copper-Nickel-Zinc Alloys.
  • E76 Test Methods for Chemical Analysis of Nickel-Copper Alloys.
  • E112 Test Methods for Determining Average Grain Size E 243 Practice for Electromagnetic (Eddy Current) Examination of Copper and Copper-Alloy Tubes.
  • E255 Practice for Sampling Copper and Copper Alloys for the Determination of Chemical Composition.
  • E478 Test Methods for Chemical Analysis of Copper Alloys.
  • E527 Practice for Numbering Metals and Alloys (UNS).

Chemical Composition:

Designation Chemical Composition %
Cu Sn Al As Ni Fe Mn Pb max. Zn
C44300 70.0-73.0 0.9-1.2 - 0.02-0.06 - 0.06 max - 0.07 Rem
C68700 76.0-79.0 - 1.8-2.5 0.02-0.06 - 0.06 max - 0.07 Rem
C70400 Rem - - - 4.8-6.2 1.3-1.7 0.3-0.8 0.05 1.0max
C70600 Rem - - - 9.0-11.0 1.0-1.8 1.0max 0.05 1.0max
C71500 Rem - - - 29.0-33.0 0.4-1.0 1.0max 0.05 1.0max
C71640 Rem - - - 29.0-32.0 1.7-2.3 1.5-2.5 0.05 1.0max
 

The world standard Grade equivalent to ASTM B111

Material Designation Corresponding Material Symbol
GB/T8890 ASTM B111 BS2871 JIS H3300 DIN1785
Copper-Nickel BFe10-1-1 C70600 CN102 C7060 CuNi10Fe1Mn
BFe30-1-1 C71500 CN107 C7150 CuNi30Mn1Fe
(BFe30-2-2) C71640 CN108 C7164 CuNi30Fe2Mn2
(BFe5-1.5-0.5) C70400 - - -
B7 - - - -
Aluminums Brass HAL77-2 C68700 CZ110 C6870 CuZn20Al2
Admiralty Brass HSn70-1 C44300 CZ111 C4430 CuZn28Sn1
Boric Brass Hsn70-18 - - - -
HSn70-1 AB - - - -
Arsenical Brass H68A - CZ126 - -
Brass Tube H65/H63 C28000/C27200 CZ108 C2800/C2700 CuZn36/CuZn37

Tensile Requirements

Copper or Copper Alloy UNS NO. Temper Designation Tensile Strength Yield Strength
Standard Former min ksi min ksi
C44300 O61 annealed 45 15
C68700 O61 annealed 50 18
C70400 H55 light-drawn 38 30
C70600 H55 light-drawn 45 15
C71500 O61 annealed 52 18
C71640 O61 annealed 63 25
 

Expansion Test

  • Tube specimens selected for test shall withstand the expansion shown in standard when expanded in accordance with Test Method B 153. The expanded tube shall show no cracking or rupture visible to the unaided eye.
  • Hard-drawn tubes not end annealed are not subject to this test. When tubes are specified end annealed, this test is required and shall be performed on the annealed ends of the sampled tubes.
  • Tubes for ferrule stock are not subject to the expansion test.

Flattening Test

  • Test Method-Each test specimen shall be flattened in a press at three (3) places along the length, each new place to be rotated on its axis approximately one third turn from the last flattened area. Each flattened area shall be at least 2 in. in length. A flattened test-specimen shall allow a micrometer caliper set at three (3) times the wall thickness to pass freely over the flattened area. The flattened areas of the test specimen shall be inspected for surface defects.
  • During inspection, the flattened areas of the test- specimen shall be free of defects, but blemishes of a nature that do not interfere with the intended application are acceptable.
  • Tubes for ferrule stock are not subject to flattening test.

Residual Stress Test

  • A residual stress test is required to be performed only for Copper Alloy UNS Nos. C23000, C28000, C44300, C44400, C44500, C60800, C61300, C61400, and C68700.
  • Unless otherwise specified, the producer shall have the option of testing the product to either the mercurous nitrate test, Test Method B 154, or the ammonia vapor test, Test Method B 858, as prescribed below.

Nondestructive Testing

Eddy-Current Test-Each tube shall be passed through an eddy-current testing unit adjusted to provide information on the suitability of the tube for the intended application. Testing shall follow the procedures of Practice E 243.

Hydrostatic Test

Each tube shall stand, without showing evidence of leakage, an internal hydrostatic pressure sufficient to subject the material to a fiber stress of 7000 psi [48 MPa] as determined by the following equation for thin hollow cylinders under tension. The tube need not be tested at a hydrostatic pressure of over 1000 psi [7.0 MPa] unless so specified.

 
Detailed Photos
ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
 
ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube

 

 
Processing of Production

ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube


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ASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser TubeASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser TubeASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser TubeASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser TubeASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser TubeASME Sb111 C10100/10200/10300 E8/29/55 Copper Alloy Pipe Seamless Condenser Tube
 

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