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ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube

ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube

  • ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube
  • ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube
  • ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube
  • ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube
ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube
Product Details:
Place of Origin: CHINA
Brand Name: YUHONG
Certification: ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Model Number: ASTM B111 UNS C70600 Seamless Copper Nickel Tube
Payment & Shipping Terms:
Minimum Order Quantity: 500kgs
Packaging Details: Ply-wooden Case /Iron Case/ Bundle with plastic Cap
Delivery Time: 7days
Payment Terms: L/C, T/T
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Detailed Product Description
Product Name: Copper Nickel Tube Standard: ASTM B111, ASME SB111
Material: UNS C70600 O.D: 6.35mm To 114.3mm
Thickness: BWG 10,12,14,16,18,20,22 Length: Single Random Length, Double Random Length, Customize Size
End: Plain End, Beveled End Type: Seamless
Application: Condenser, Evaporator And Heat Exchanger Tubes; Distiller Tubing; Salt Water Piping.
Highlight:

Heat Exchanger Replacement Copper Alloy Tube

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ASTM B111 Copper Alloy Tube

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C70600 Copper Alloy Tube

Copper Nickel Tube ASTM B111 UNS C70600 Annealed Seamless Heat Exchanger Tube

 

 

Replacing the tubes in a heat exchanger requires careful planning and consideration of multiple factors, from material selection and design specifications to maintenance and regulatory compliance. A well-thought-out approach ensures that the replacement will enhance the performance and longevity of the heat exchanger. Copper nickel C70600 offers superior resistance to corrosion, especially in seawater and other aggressive environments. This is crucial for maintaining the integrity and performance of the heat exchanger over time.

 

 

When planning to replace the tubes of a heat exchanger, several important considerations should be taken into account to ensure a successful project. Here’s a comprehensive overview:

1. Material Selection

  • Compatibility: Ensure the new tubes match the existing materials or are compatible with the fluids used. Factors like corrosion resistance, temperature, and pressure ratings are essential.

  • Corrosion Resistance: Consider the environment the heat exchanger operates in (e.g., seawater, chemicals) and select materials that will withstand those conditions (e.g., C70600 for marine applications).

2. Design Specifications

  • Tube Diameter and Length: Verify the dimensions of the replacement tubes to ensure they fit properly. Changes in size can affect flow rates and thermal performance.

  • Number of Tubes: Ensure the number of replacement tubes matches the design requirements of the heat exchanger to maintain efficiency.

3. Heat Transfer Efficiency

  • Surface Area: Consider the surface area of the new tubes, as larger surface areas typically enhance heat transfer efficiency.

  • Design Factors: Evaluate how changes in material or design could influence overall heat exchanger performance.

4. Pressure and Temperature Ratings

  • Operating Conditions: Verify that the new tubes can handle the specified operating conditions of the heat exchanger, including maximum and minimum pressures and temperatures.

5. Installation Process

  • Downtime and Logistics: Plan for the downtime required to replace the tubes and coordinate the logistics for obtaining new materials.

  • Installation Techniques: Choose appropriate installation methods (such as welding, expansion, or mechanical fitting) that suit the materials and design.

6. Maintenance and Inspection

  • Ease of Maintenance: Consider how the new tubes will affect maintenance schedules and processes. Tubes that are easier to clean and inspect can improve long-term performance.

  • Reliability: Assess the expected life span of the new tubes and any specific maintenance needs.

 

 

Equivalent Material Grades

Material Designation Corresponding Material Symbol
ASTM B111 BS2871 JIS H3300 DIN1785 GB/T 8890
Copper Nickel C70600 CN102 C7060 CuNi10Fe1Mn BFe10-1-1
C71500 CN107 C7150 CuNi30Mn1Fe BFe30-1-1
C71640 CN108 C7164 CuNi30Fe2Mn2 BFe30-2-2
C70400 BFe5-1.5-0.5
B7
Aluminium Brass C68700 CZ110 C6870 CuZn20AL2 HAL77-2
Admiralty Brass C44300 CZ111 C4430 CuZn28Sn1 HSn70-1
Boric Brass Hsn70-1B
Hsn70-1 AB
Arsenical Brass CZ126 H68A
Brass Tube C28000/C27200 CZ108 C2800/C2700 CuZn36/CuZn37 H65/H63

 

 

Chemical Composition & Mechanical Properties

Steel Grade Cu Sn Al As Ni Fe Mn Pb Zn
C70400 Remain - - - 4.8-6.2 1.3-1.7 0.3-0.8 0.05 max 1.0 max
C70600 Remain - - - 9.0-11.0 1.0-1.8 1.0 max 0.05 max 1.0 max
C71500 Remain - - - 29.0-33.0 0.4-1.0 1.0 max 0.05 max 1.0 max
C71640 Remain - - - 29.0-32.0 1.7-2.3 1.5-2.5 0.05 max 1.0 max

 

 

Application

  • Chillers
  • Heat Condensers & Exchangers
  • Power Plants
  • Refineries
  • Desalination Plants
  • Ship Building & Ship Repairs
  • Defence
  • High Capacity Power Plants
  • Distiller Tubes
  • Evaporators & Ferrules

 

 

ASTM B111 UNS C70600 Copper Nickel Tube Heat Exchanger Replacement Tube 0

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