Aluminum-Titanium Alloy (ALTi10)
Aluminum-Titanium Alloy (ALTi10)
Aluminum-Titanium Alloy (ALTi10)
Aluminum-Titanium Alloy (ALTi10)
Aluminum-Titanium Alloy (ALTi10)
Aluminum-Titanium Alloy (ALTi10)

Aluminum-Titanium Alloy (ALTi10)

  • element:Al, Ti
  • purity:Ti 9–11%
  • shape:Round bars, thin sheets, plates, particles, or custom machined parts (customized based on customer needs)
  • specification:Based on customer requirements
  • packaging:Customized as per customer requirements

Aluminum-titanium alloy (ALTi10) is a high-performance metallurgical material known for its superior strength, corrosion resistance, and grain refinement capabilities. It is widely used in aerospace engineering, automotive manufacturing, industrial machinery, and precision casting applications. Due to its ability to enhance mechanical properties and thermal stability, aluminum-titanium alloy plays a crucial role in advanced material development, sustainable engineering, and high-performance industrial solutions.

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Product Description
Aluminum-Titanium Alloy (ALTi10) contains 9–11% titanium, which effectively refines the grain structure and improves the plasticity of the alloy. While maintaining the lightweight and excellent processing capabilities of aluminum, the addition of titanium enhances the strength and high-temperature performance of the alloy. ALTi10 exhibits exceptional stability in high-temperature and high-stress environments, making it suitable for demanding applications in aerospace, automotive, and marine industries.

Product Features

  • Titanium Content (9–11%): Refines the grain structure and improves plasticity, enhancing the alloy’s performance.
  • Increased Strength and High-Temperature Performance: Suitable for high-stress and high-temperature environments.
  • Good Processability: Can be processed into various forms, such as round bars, thin sheets, plates, and particles.
  • Strict Composition Control: Due to the potential for titanium segregation, strict control of the alloy composition is necessary during production.
  • Enhanced Strength and Toughness: Provides increased strength and toughness, ensuring stability under extreme working conditions.

Applications

  • Aerospace: Used in the manufacture of aerospace components such as aircraft and rocket parts, providing strength and high-temperature resistance.
  • Automotive Industry: Suitable for automotive engines, structural components, and parts, enhancing high-temperature performance and fatigue resistance.
  • Marine Industry: Used in ship and marine equipment components, offering exceptional corrosion resistance and strength.
  • Military: Applied in high-strength and lightweight components for military equipment, such as weapon systems and aircraft fuselages.
  • Electronics: Used in the production of electronic enclosures and key components, ensuring high-temperature resistance and structural stability.

 

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