Ningbo Jintian Copper (Group) Co., Ltd.
Ningbo Jintian Copper (Group) Co., Ltd.
Copper

OF-Cu Copper

Copper

Designation

OF-Cu (Oxygen-Free Copper)
Alternate names: C11000 (ASTM), Cu-OF (EN), 2.0040 (DIN 1708)


Key Features

1. Ultra-High Purity: Copper content ≥99.95%, oxygen ≤0.06%, with minimal impurities.

2. Exceptional Conductivity: Electrical conductivity ≥100% IACS, second only to silver, ideal for high-precision electrical components.

3. High Thermal Conductivity: Thermal conductivity ≥391 W/(m·K), excellent heat dissipation.

4. Corrosion Resistance: Resistant to atmospheric corrosion but susceptible to hydrogen embrittlement in high-temperature reducing atmospheres.

5. Workability: Suitable for cold/hot working (wire drawing, forging, stamping), weldable, and brazeable.


Product Forms & Specifications

Form

Specifications

Copper Rod

Diameter: 3mm–150mm; Length: 1000mm–6000mm

Copper Tube

OD: 5mm–200mm; Wall Thickness: 0.5mm–10mm

Copper Sheet/Strip

Thickness: 0.1mm–50mm; Width: 100mm–1200mm

Copper Wire

Diameter: 0.05mm–10mm; Custom spool lengths

Copper Foil

Thickness: 0.005mm–0.1mm; Width: 10mm–500mm

Custom Profiles

Tailored to drawings (e.g., lead frames, terminals)


Chemical Composition

Element

Cu

O

Total Impurities

Content

≥99.95%

≤0.06%

≤0.05%

Note: Typical impurity limits (%): Pb≤0.005, Fe≤0.005, S≤0.005, Bi≤0.001


Physical Properties

Property

Value

Density

8.94 g/cm³

Melting Point

1083°C

Thermal Conductivity (20°C)

391 W/(m·K)

Electrical Conductivity (20°C)

101–102% IACS

Resistivity (20°C)

1.673×10⁻⁸ Ω·m

Thermal Expansion Coefficient

16.5×10⁻⁶/K (20–300°C)


Mechanical Properties

Condition

Tensile Strength (MPa)

Yield Strength (MPa)

Elongation (%)

Hardness (HV)

Soft State

200–250

60–80

≥40

35–45

Hard State

350–420

330–380

2–8

85–95

Note: Hard state data based on cold-working processes.


Core Advantages

1. High Purity & Conductivity: Ensures zero signal interference in high-end electronics.

2. High-Temperature Stability: Withstands 920°C brazing in hydrogen environments (requires O₂ ≤0.03%).

3. Low Gas Emission: Ideal for vacuum devices (e.g., magnetrons, traveling wave tubes).


Applications

  • Electronics: IC lead frames, vacuum switch contacts, superconducting magnet stabilizers.

  • Power Transmission: Busbars, cables, transformer windings.

  • Aerospace: Rocket engine cooling ducts, satellite waveguide components.

  • Vacuum Devices: High-power transmitter tubes, vacuum capacitors.


Processing Guidelines

1. Cold Working:

Anneal at 500–700°C (under protective atmosphere) to relieve stress.

2. Hot Working:

Hot-rolling temperature range: 750–875°C; avoid oxidation.

3. Welding:

Avoid welding in reducing atmospheres >370°C to prevent hydrogen embrittlement.

4. Surface Treatment:

Use sulfuric acid + hydrogen peroxide for pickling; avoid nitric acid.


Key Application Scenarios

Industry

Typical Components

Performance Requirements

Electrovacuum

Magnetrons, vacuum capacitor brazes

High-temperature H₂ resistance, low gas release

New Energy

EV charging pile terminals

High current capacity, arc erosion resistance

Medical Equipment

MRI coils, electrosurgical tools

Non-magnetic interference, signal fidelity


FAQ

Q1: How does OF-Cu differ from regular copper?

A1: OF-Cu has lower oxygen (≤0.06% vs. ≤0.1% in regular copper), higher conductivity, and reduced hydrogen embrittlement risk.


Q2: How to avoid hydrogen embrittlement?

A2: Control oxygen content ≤0.03% and avoid high-temperature H₂ exposure during processing.


Q3: Heat treatment specifications?

A3: Anneal at 500–700°C; hot work at 750–875°C.


Standards Reference

Standard

Code

Scope

Germany

DIN 1708-1973

Chemical composition, material codes

China

GB/T 5231-2020

Classification & properties of wrought copper

USA

ASTM B152/B152M-21

Technical requirements for sheet/strip/foil


Note: Actual parameters may vary due to production processes or heat treatment. Refer to factory test reports for precise specifications.


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