Copper rod, Chrome - Japan

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2,096,495 ₫

The above price does not include the cost of annealing

3.0x1000.0 6.0x1000.0 8.0x1000.0

Processing method Standard table

Surface Standard

KT1 KT2 KT3

Notes

Quantity

DESCRIPTION

Refined Copper Chrome is a specialized copper alloy that contains a small amount of chromium, added to enhance mechanical properties and heat resistance. Copper chrome is often used in applications requiring high strength, corrosion resistance, and good electrical conductivity.

Key Characteristics of Refined Copper Chrome:

- Chemical Composition:
- This copper alloy contains a small amount of chromium (around 0.5-1.2%), which improves the material’s hardness, strength, and heat resistance.

- Physical Properties:
- High Strength and Hardness: Due to the presence of chromium, copper chrome has higher hardness and strength compared to pure copper, enhancing its load-bearing and wear-resistant capabilities.
- Heat Resistance: This alloy can withstand high temperatures without losing its mechanical properties, making it suitable for heat-resistant applications.
- Good Electrical Conductivity: Although it does not conduct electricity as well as pure copper, copper chrome still offers good conductivity, meeting technical requirements in electrical applications.

- Applications:
- Electronics and Electrical Power: Used in the production of components requiring electrical conductivity and heat resistance, such as electrodes, electrical contacts, and welding parts.
- Aerospace Industry: Applied in high-temperature and high-pressure applications due to its wear resistance and heat resistance.
- Machinery Manufacturing: Employed in machine parts requiring high strength and corrosion resistance.

- Shape and Size:
- Refined Copper Chrome is typically available in the form of rods, sheets, tubes, and other product forms depending on specific application requirements.

Manufacturing and Processing:
- Copper chrome is produced through a metallurgical process in which chromium is added to pure copper. This process enhances the alloy's mechanical properties, which are then machined into the necessary shapes.
(Source: Internet)

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