Brass round bar, BeCu50 - HT - Japan

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1,578,876 ₫

The above price does not include the cost of annealing

8.0x1000.0

Processing method Standard table

Surface Standard

KT1 KT2 KT3

Notes

Quantity

DESCRIPTION

BeCu50 Copper Alloy is a special alloy made of copper (Cu) and beryllium (Be). This alloy is renowned for its combination of electrical conductivity, mechanical strength, and high hardness, especially after heat treatment. BeCu50 is often used in applications requiring high elasticity, wear resistance, and good corrosion resistance.

Key characteristics of BeCu50 Copper Alloy:

- Chemical Composition:
- BeCu50 primarily consists of copper (Cu) with about 2% beryllium (Be), along with other elements such as cobalt (Co) or nickel (Ni) to enhance its physical properties.

- Physical Properties:
- High Strength and Hardness: After heat treatment, BeCu50 can achieve very high strength and hardness, making it suitable for load-bearing and wear-resistant applications.
- Good Electrical and Thermal Conductivity: Although not as high as pure copper, BeCu50 still offers good electrical and thermal conductivity, suitable for applications requiring durability and conductivity.
- Corrosion Resistance: BeCu50 has good corrosion resistance, especially in humid and mildly corrosive environments.

- Applications:
- Electronics Industry: Used in electrical contacts, springs, and conductive parts requiring high elasticity and strength.
- Aerospace Industry: Employed in components requiring precision and high load-bearing capacity.
- Oil and Gas Industry: Used in oil and gas extraction equipment and devices operating in harsh environments.

- Shape and Size:
- BeCu50 is typically available in forms such as rods, plates, tubes, and wires, catering to various manufacturing requirements.

Manufacturing and Processing:
- BeCu50 is produced through casting and rolling processes, followed by heat treatment to achieve the desired mechanical properties. Processing may include cutting, turning, and welding, with good machinability due to the alloy's physical properties.
(Source: Internet)

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