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Hebei Ruiyun Wire Mesh Technology Co., Ltd.

Nickel Foam

Ultra-Thin Nickel Foam

Ultra-thin nickel foam is a high-tech new material made from high-purity nickel through a special process. It features a highly porous, ultra-thin, and lightweight structure. The thickness of this material can be controlled at the micron level, providing excellent electrical conductivity, mechanical strength, and chemical stability, making it crucial for a wide range of applications.

Parameters

  • Thickness: 5mm - 25mm

  • PPI (Pores Per Inch): 20 - 200ppi

  • Surface Density: 180g - 3000g

  • Maximum Length: 200m

  • Maximum Width: 980mm

  • Nickel Purity: ≥99.8%

  • Porosity: 50% - 98%

  • Electrical Conductivity: Excellent, suitable for battery and electrode materials

  • Thermal Conductivity: High, ideal for heat dissipation applications

  • Operating Temperature: Up to 1150℃

  • Applications: Widely used in battery electrodes, catalyst carriers, heat dissipation materials, filtration, etc.

  • Packaging: Standard export packaging to ensure safe transport



Features

1.High Porosity and Specific Surface Area: Ultra-thin nickel foam has a porosity of over 95%, resulting in an extensive specific surface area that enhances catalytic and electrochemical reaction efficiency.

2.Superior Electrical Conductivity: The combination of the foam structure and pure nickel material gives ultra-thin nickel foam stable and excellent conductivity, making it highly suitable for electrode materials.

3.Lightweight: The porous structure makes the material extremely light while maintaining excellent strength and toughness, suitable for applications where weight is critical.

4.Uniform Thickness, Easy to Process: The material has a consistent thickness and can be precisely cut and shaped as needed, making it easy to integrate into various products.

Application Fields

1.Energy Storage: Widely used in lithium-ion batteries, supercapacitors, and other energy storage devices as electrode materials, significantly improving charge-discharge efficiency and cycle life.

2.Electrochemical Catalysis: The high specific surface area and conductivity of ultra-thin nickel foam make it an excellent catalyst carrier for applications such as fuel cells and hydrogen production by electrolysis, increasing reaction rate and efficiency.

3.Shielding Materials: In electronic devices, ultra-thin nickel foam can be used as electromagnetic interference (EMI) shielding material, offering excellent shielding effects while remaining lightweight.

4.Filtration and Separation: In the chemical and environmental protection fields, ultra-thin nickel foam is used for gas and liquid filtration and separation. Its corrosion resistance and high porosity ensure efficient and stable filtration performance.

Advantages

· High-Performance Efficiency: Possesses high conductivity and chemical stability, capable of withstanding complex working environments.

· Environmentally Friendly: The material is recyclable and meets environmental standards, making it a green and sustainable material choice.

· Customizable Options: Customization is available for thickness, size, and pore size according to customer needs.


With its unique physical and chemical properties, ultra-thin nickel foam demonstrates irreplaceable value in the energy, catalytic, and electronics industries. Whether enhancing the efficiency of energy devices or solving specific industrial needs, ultra-thin nickel foam offers the best solution for your applications.

Company Advantages

Robust Infrastructure

Robust Infrastructure

Hebei Ruiyun Wire Mesh Technology Co., Ltd. owns modern production equipment and advanced production processes. The company covers an area of 30,000 square meters and is equipped with over 180 fully automated production lines, including cutting machines, drawing machines, weaving machines, and welding equipment. With an annual production capacity of over 120,000 square meters, we efficiently meet the demands of large orders. The company has fixed assets of RMB 35 million, ensuring our leading position in the industry.

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