Aluminum Alloy round bar, (DSA20) A6463BE - T6 - Japan

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210,174 ₫

The above price does not include the cost of annealing

30.0x2000.0 33.0x2000.0 40.0x2000.0 45.0x2000.0 54.0x2000.0 62.0x2000.0

Processing method Standard table

Surface Standard

KT1 KT2 KT3

Notes

Quantity

DESCRIPTION

Aluminum Alloy A6463BE is an aluminum alloy from the 6000 series, containing silicon (Si) and magnesium (Mg) as the primary alloying elements. A6463BE is recognized for its good corrosion resistance, suitable hardness and strength, along with its ease of processing and surface finishing, making it a popular choice in various industrial applications.

Key Characteristics of Aluminum Alloy A6463BE:

- Chemical Composition:
- Aluminum Alloy A6463BE primarily consists of aluminum (Al), with silicon (Si) and magnesium (Mg) content, along with small amounts of other elements such as iron (Fe), copper (Cu), manganese (Mn), and chromium (Cr).

- Physical Properties:
- Corrosion Resistance: A6463BE offers good resistance to corrosion, especially in humid environments or where external environmental factors are present.
- Machinability: This alloy is easily machinable, particularly in extrusion and shaping processes.
- Strength and Hardness: A6463BE has moderate strength and hardness, making it suitable for applications requiring balanced strength and machinability.

- Applications:
- Construction Industry: Used in architectural applications, including window frames, door frames, and other structural components.
- Industrial Applications: Applied in the manufacturing of precision parts, such as automotive components, aircraft parts, and electronic devices.
- Interior Decoration: A6463BE is also used in the production of interior decoration products due to its excellent surface finishing capabilities.

- Shape and Size:
- Aluminum Alloy A6463BE is typically available in forms such as sheets, bars, tubes, and other product shapes tailored to specific application requirements.

Manufacturing and Processing:
- Aluminum A6463BE is typically produced through extrusion, forming, and heat treatment processes to optimize its mechanical properties. Anodizing can be applied to improve corrosion resistance and enhance surface durability.
(Source: Internet)

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