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AL1625 Aluminum Chromium Master Alloy

Catalog No. AL1625
Shape ingots

Aluminum chromium master alloys are semi-finished products and can be formed in different shapes. Stanford Advanced Materials supplies aluminum chromium master alloy at competitive prices and with unrivaled customer service.

Related products: Aluminum Antimony Master Alloy, Aluminum Beryllium Master Alloy, Aluminum Bismuth Master Alloy

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Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Aluminum Chromium Master Alloy
Description
Specification
Technical Data Sheet

Aluminum Chromium Master Alloy Description

Master alloys are semi-finished products and can be formed in different shapes. They are a pre-alloyed mixture of alloying elements. They are also known as modifiers, hardeners, or grain refiners based on their applications. They are added to a melt to achieve the desired result. They are used instead of pure metal because they are very economical and save energy and production time.

Aluminum Chromium Master Alloy Specification

Product Name

Aluminum chromium master alloy

Content

Chemical Compositions ≤ %

Balance

Si

Fe

Cu

Mn

Cr

Ni

Ti

Zn

Pb

Sn

Mg

Zr

Other Single

Total Impurities

AlCr2

Al

0.20

0.50

0.20

/

1.5~2.5

/

/

0.10

/

/

/

/

0.05

0.15

AlCr3

Al

0.25

0.50

0.20

0.10

2.5~3.5

/

/

0.10

/

/

0.10

/

0.05

0.15

AlCr5

Al

0.40

0.45

0.15

0.35

4.0~6.0

0.10

0.10

/

0.10

0.10

0.50

0.15

0.05

0.15

AlCr10

Al

0.20

0.30

0.05

0.05

9.0~11.0

0.05

0.05

/

/

/

/

/

0.05

0.15

AlCr20

Al

0.30

0.30

0.05

0.05

18.0~22.0

/

/

/

/

/

/

/

0.05

0.15

Applications

1. Hardeners: Used for enhancing physical and mechanical properties of metal alloys.
2. Grain Refiners: Used for controlling the dispersion of individual crystals in metals to produce a finer and more uniform grain structure.
3. Modifiers & Special Alloys: Typically used to increase strength, ductility and machinability.

Other Products

AlMn, AlTi, AlNi, AlV, AlSr, AlZr, AlCa, AlLi, AlFe, AlCu, AlCr, AlB, AlRe, AlBe, AlBi, AlCo, AlMo, AlW, AlMg, AlZn, AlSn, AlCe, AlY, AlLa, AlPr, AlNd, AlYb, AlSc, etc.

Aluminum Chromium Master Alloy Features:

Precise Alloying: Aluminum Chromium Master Alloy is designed for precise alloying, enabling the controlled addition of chromium to aluminum-based alloys.

Enhanced Mechanical Properties: The incorporation of chromium improves the mechanical strength, hardness, and wear resistance of aluminum alloys, enhancing their overall performance.

Corrosion Resistance: Chromium imparts excellent corrosion resistance to aluminum alloys, making them suitable for use in demanding environments.

Customizable Composition: The alloy's composition can be tailored to meet specific requirements, ensuring flexibility in alloy development.

Aluminum Chromium Master Alloy Benefits:

High-Performance Alloys: Aluminum Chromium Master Alloy is the foundation for the creation of high-performance aluminum alloys used in aerospace, automotive, and industrial applications.

Mechanical Enhancement: It significantly improves the mechanical properties of aluminum, increasing its suitability for structural components and applications requiring durability.

Corrosion Protection: The addition of chromium enhances the corrosion resistance of aluminum alloys, extending their lifespan in aggressive environments.

Aluminum Chromium Master Alloy FAQs

Q1. What is Aluminum Chromium Master Alloy?

Aluminum Chromium Master Alloy is a combination of aluminum and chromium used in aluminum processing to enhance mechanical properties, corrosion resistance, and high-temperature performance in aluminum alloys.

Q2. What forms is Aluminum Chromium Master Alloy available in?

The alloy is typically supplied in:

  • Waffle ingots.
  • Rods or bars.
  • Granules or small pieces for easy handling and addition to molten aluminum.

Q3. How is Aluminum Chromium Master Alloy used?

It is added directly to molten aluminum at a controlled temperature, allowing the chromium to dissolve uniformly and integrate effectively into the alloy.

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