Material Type

Metal

Material Sub-Type

Other Metals

Material Name

Copper C101

Copper C101, also known as oxygen-free high conductivity copper, is a type of copper that has a high level of electrical conductivity and is often used in electrical applications where high levels of conductivity are required. It is typically made by refining copper in a furnace with oxygen-free gases, which removes impurities and increases its conductivity. Copper C101 is also known for its durability and resistance to corrosion, making it a popular choice for applications in harsh environments. It is commonly used in the manufacturing of wire, cable, and electrical components.

Cost
Lead Time

2-3 Days

Processes

CNC Machining

Metric

English

Note: Properties are not guaranteed. They are intended only as a basis for comparison and not for design purposes.

Last Updated:2 months ago
Mechanical Properties

Yield Tensile Strength

207 MPa

Ultimate Tensile Strength

262 MPa

Tensile Modulus

117 GPa

Shear Strength

165 MPa

Shear Modulus

43 GPa

Fatigue Strength

97 MPa

Elongation At Break

25 %

Poisson's Ratio

0.34

Hardness

B25/64

Density

8.9 g/cm³

Impact Strength (ASTM)

-

Electrical/Magnetic Properties

Surface Resistance (ANSI)

2.0 µΩ

Magnetism

Non-Magnetic

Thermal Properties

Heat Deflection Temperature

-

Thermal Expansion Coefficient

17.0 µm/(m⋅°C

Specific Heat Capacity

0.385 J/g°C

Thermal Conductivity

387 W/(m⋅°C)

Melting Point

1083 °C

Chemical Properties

Corrosion Resistance

Good

Copper C101

Highly conductive and corrosion-resistant copper

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Material Datasheet

Material Type

Metal

Material Sub-Type

Other Metals

Material Name

Copper C101

Note: Properties are not guaranteed. They are intended only as a basis for comparison and not for design purposes.

Mechanical Properties

Yield Tensile Strength

207 MPa

30.0 Ksi

Ultimate Tensile Strength

262 MPa

38.0 Ksi

Tensile Modulus

117 GPa

17.0 Msi

Shear Strength

165 MPa

24.0 Ksi

Shear Modulus

43 GPa

6.3 Msi

Fatigue Strength

97 MPa

14.0 Ksi

Elongation At Break

25 %

-

Poisson's Ratio

0.34

-

Hardness

B25/64

-

Density

8.9 g/cm³

0.322 lb/in³

Impact Strength (ASTM)

-

-

Electrical/Magnetic Properties

Surface Resistance (ANSI)

2.0 µΩ

-

Magnetism

Non-Magnetic

-

Thermal Properties

Heat Deflection Temperature

-

-

Thermal Expansion Coefficient

17.0 µm/(m⋅°C

9.4 µin/(in⋅°F)

Specific Heat Capacity

0.385 J/g°C

0.092 BTU/lb-°F

Thermal Conductivity

387 W/(m⋅°C)

223.5 BTU/(h⋅ft⋅°F)

Melting Point

1083 °C

1981 °F

Chemical Properties

Corrosion Resistance

Good

-

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