Aluminum-Titanium alloy targets are high-performance materials used in various industrial applications, including thin film deposition, aerospace components, and advanced coatings. They are known for their excellent thermal stability, high corrosion resistance, and unique properties.
Product Overview
Aluminum-titanium alloy targets are high-purity, high-density materials primarily composed of aluminum and titanium. They are widely used in sputtering deposition technologies. These targets offer excellent sputtering rates and strong film adhesion, providing uniform, durable thin film coatings through special production processes. Aluminum-titanium alloy targets have significant applications in optical, electronics, and photovoltaic industries and can be customized to meet specific technical requirements.
Product Features
- High purity (3N5), ensuring target material quality
- High density, providing excellent sputtering performance and stable film quality
- Hot isostatic pressing (HIP) treatment creates a uniform grain structure
- Aluminum-to-titanium ratio can be adjusted to optimize target performance based on customer needs
- High sputtering rate, strong film adhesion, and resistance to cracking and peeling
Applications
- Electronics Industry:Used for surface coatings on electronic components, enhancing durability and performance
- Optical Industry:Applied in optical coatings to improve wear resistance and optical performance of optical components
- Photovoltaic Industry:Used as a deposition material in photovoltaic devices to enhance conversion efficiency of solar panels
- Decorative Industry:Used for decorative coatings, ensuring high coating quality and stability
- Cutting Tool Manufacturing:Used for coating tools, improving wear resistance and extending tool lifespan
Element | Measured Value | Standard Value | Unit | Element | Measured Value | Standard Value | Unit | Element | Measured Value | Standard Value | Unit |
Li | ppm | Zn | <5 | ppm | Pb | <5 | ppm | ||||
B | ppm | Ga | ppm | Bi | <5 | ppm | |||||
F | ppm | Ge | ppm | Y | ppm | ||||||
Na | ppm | As | <10 | ppm | Th | ppm | |||||
Mg | ppm | Se | ppm | Er | ppm | ||||||
Al | Matrix | wt% | Zr | <5 | ppm | Ru | ppm | ||||
Si | 210 | ppm | Nb | ppm | Rb | ppm | |||||
P | ppm | Mo | ppm | Sr | ppm | ||||||
Cl | ppm | Pd | ppm | Sc | <5 | ppm | |||||
K | ppm | Ag | ppm | Te | ppm | ||||||
Ca | ppm | Sn | <10 | ppm | I | ppm | |||||
Ti | 30.7 | wt% | Sb | <5 | ppm | U | ppm | ||||
V | ppm | Ba | ppm | ||||||||
Cr | ppm | Hf | ppm | ||||||||
Mn | ppm | Ta | ppm | C | 130 | ppm | |||||
Fe | 360 | ppm | W | ppm | S | ppm | |||||
Co | ppm | Pt | ppm | O | 2700 | ppm | |||||
Ni | ppm | Au | ppm | N | 120 | ppm | |||||
Cu | ppm | Hg | ppm | H | 270 | ppm |