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VD0597 Aluminum Nickel (Al/Ni) Evaporation Materials

Catalog No. VD0597
Material Aluminum Nickel (Al/Ni)
Purity 99.9% ~ 99.99%
Shape Powder/ Granule/ Custom-made

Aluminum Nickel (Al/Ni) Evaporation Materials are thin film deposition materials used in a process called physical vapor deposition (PVD) to coat surfaces with a thin layer of aluminum and nickel. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Aluminum Nickel (Al/Ni) Evaporation Materials.

Related products: Ta/Al Evaporation Materials, Ti/Al Evaporation Materials, Zn/Al Evaporation Materials

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Description
Specification
Technical Data Sheet

Aluminum Nickel (Al/Ni) Evaporation Materials Description

Aluminum Nickel (Al/Ni) Evaporation Materials are thin film deposition materials used in a process called physical vapor deposition (PVD) to coat surfaces with a thin layer of aluminum and nickel. PVD is commonly used in industries such as electronics, optics, and automotive for various applications including coatings, plating, and thin film production.

Aluminum and nickel are mixed together in a specific ratio to create the evaporation material. The mixture is typically in the form of a pellet or wire. When heated in a vacuum chamber, the material evaporates and condenses on the desired substrate, forming a thin film coating.

The properties of the Aluminum Nickel (Al/Ni) Evaporation Materials can be controlled by adjusting the ratio of aluminum to nickel. This allows for customization of the coating's physical and chemical characteristics such as hardness, wear resistance, conductivity, and corrosion resistance.

Aluminum Nickel (Al/Ni) Evaporation Materials Specifications

Material

Aluminum Nickel (Al/Ni)

Purity

99.9% ~ 99.99%

Shape

Powder/ Granule/ Custom-made

Composition

Customized

Aluminum Nickel (Al/Ni) Evaporation Materials Applications

1. Thin Film Deposition: Al/Ni Evaporation Materials can be used for the deposition of thin films in processes such as physical vapor deposition (PVD). These thin films can be applied on surfaces of different materials to enhance their properties.

2. Microelectronic Devices: Al/Ni Evaporation Materials are commonly used in the fabrication of microelectronic devices such as integrated circuits (ICs) and transistors. They can be used for metallization, bonding, and contact formation.

3. Interconnects: Al/Ni Evaporation Materials can be used for creating interconnects and conductive traces in electronic devices. They provide good electrical conductivity and are compatible with various substrate materials, making them suitable for this application.

4. Soldering Alloys: The combination of aluminum and nickel can be used for creating soldering alloys with improved properties. These alloys can be used for joining different metallic components in electronic assemblies.

5. Electrical Contacts: Al/Ni Evaporation Materials are often utilized in the manufacturing of electrical contacts. They help in establishing reliable electrical connections and maintaining conductivity in electrical and electronic devices.

6. Battery Electrodes: Aluminum nickel (Al/Ni) alloy can be used as an electrode material in rechargeable batteries. It offers high capacity and excellent cycling performance, making it suitable for energy storage applications.

7. Aerospace Applications: Al/Ni Evaporation Materials find usage in various aerospace applications, including aircraft components, satellite systems, and space exploration equipment. They can be employed in thermal management systems, electrical connectors, and structural components due to their unique characteristics.

Aluminum Nickel (Al/Ni) Evaporation Materials Packaging

Our Aluminum Nickel (Al/Ni) Evaporation Materials is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

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United States

    Purity

    99.9%

    • 99.9%
    • 99%
    • 99.5%
    • 99.99%
    • 99.999%
    • Other
    Quantity

    500gram

    • 500gram
    • 50gram
    • 100gram
    • 1kg
    • OtherQuantity
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