Aluminum Titanium Carbon Alloy

Product Details
Customization: Available
Certification: ISO
Shape: Block
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Management System Certification
ISO 9001, ISO 9000, ISO 20000, SA 8000, BS 25999-2, GAP
Export Year
2016-10-21
  • Aluminum Titanium Carbon Alloy
  • Aluminum Titanium Carbon Alloy
  • Aluminum Titanium Carbon Alloy
  • Aluminum Titanium Carbon Alloy
  • Aluminum Titanium Carbon Alloy
  • Aluminum Titanium Carbon Alloy
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Basic Info.

Model NO.
ALTi5C0.2 alloy
Preparation Method
Metallothermic Reductio
Application
Energy Materials, Photoelectric Material, Photorecording Material
Product Type
Rare Earth Metal
Composition
Al95%Ti5%C0.2 %
Transport Package
Packed in Wooden Cases/Iron Drums
Specification
5 kg /8 kg /12 kg
Trademark
taixie
Origin
China
HS Code
7806009000
Production Capacity
500 / Ton

Product Description

Aluminum Titanium Carbon AlloyAluminum-based intermediate alloy refers to hundreds of millions of titanium boride particles or titanium carbide particles and aluminum-titanium compounds in aluminum-titanium-boron alloy, aluminum-titanium-carbon alloy or aluminum-titanium alloy with different sizes, shapes, nucleation capabilities and potential. This kind of crystal core pellet is generally aluminum as the carrier, in the form of aluminum-titanium-boron alloy, aluminum-titanium-carbon alloy or aluminum-titanium alloy. The commonly said aluminum-base intermediate total generally refers to the three varieties of aluminum-titanium-boron alloy, aluminum-titanium-carbon alloy and aluminum-titanium alloy in many aluminum alloys. Aluminum base intermediate alloy products can be roughly divided into four types of products according to their specific uses and effects, such as grain refinement, metallographic metamorphism, element addition and metal purification.
In industrial production, the most practical and economical grain refinement method is to add grain refiner to the melt. Al-Ti-B is a widely used refiner in the world at present, but it is limited by its own performance defects in the rolling of high-grade foil. For example, when rolling aluminum foil with higher grain level, a part of the concentrated, hard TiB_2 core Easy stripping of the foil, resulting in pinholes that sometimes break the strip and damage the roll, which can have a negative impact on subsequent forming processes such as deep drawing. Because Al-Ti-C has a better grain refining effect than Al-Ti-B, people have shifted the research direction to Al-Ti-C new refiners, in order to overcome the existing defects of Al-Ti-B, which is the grain refiner product that the aluminum industry in various countries strongly encourages the research and development. Since the study of Al-Ti-C is still in the development stage, the reaction mechanism of Al-Ti-C ternary system was analyzed from thermodynamics and kinetics in this paper. By evenly mixing titanium salt and graphite powder into liquid aluminum, a one-step synthesis of Al-Ti-C intermediate alloy refiner based on thermite reaction and in-situ reaction, a preparation method of Al-Ti was proposed The new process of -C intermediate alloy refiner is simple, low cost and easy to scale production. The microstructure of the intermediate alloy was analyzed by means of SEM and XRD. Based on the grain refining experiment, the refined α-Al grain core was observed and the possible refining mechanism was discussed. The failure problem of Al-Ti-C refiner under long time insulation was preliminarily solved. The refining experiments show that the Al-Ti-C intermediate alloy prepared by this process can achieve the refining effect of Al5TiB made in the UK, and has better nucleation efficiency. The synthetic mechanism and synthesis are provided for production and application.

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