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0.1 0.2 0.3 Thickness Pure Nickel for Lithium Battery

CCS (Cell-to-Cell System) for new energy battery cells refers to a battery design architecture where individual battery cells are directly connected and integrated without the need for intermediate modules or packs. 
  • Nickel-23

  • ARIDA

  • 2024080723

  • >99.99% nickel

  • Local Service/Online Service

  • Nickel Plate

  • Stamping, Bending, Welding, Electroplating

  • Electricity

  • JIS, GB, BS, ASTM

  • 12 months

  • Electric Power Transmission

  • Standard Export Packing

  • Acoording to Client's Require to Provide Model

  • ARIDA

  • China

  • Solder The Nickel Sheet Onto Brass Sheet

  • High precision

  • Worldwide

  • Yes

Availability:
Quantity:
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Main Product


0.1 0.2 0.3 Thickness Pure Nickel for Lithium Battery 
167

0.1, 0.2, and 0.3 mm thickness pure nickel is a specialized material used in the construction of lithium batteries. These thin sheets of nickel are known for their high electrical conductivity, corrosion resistance, and mechanical strength, making them ideal for various components within lithium battery assemblies.

The use of pure nickel in these thicknesses provides several key benefits:

  • Electrical Conductivity: Nickel's high conductivity ensures efficient current flow, contributing to the overall performance and efficiency of the battery.

  • Corrosion Resistance: The material's inherent resistance to corrosion ensures long-term reliability and durability, even in harsh environments.

  • Customizability: The availability of different thicknesses allows for precise engineering of battery components, tailored to specific applications.

  • Strength and Durability: Despite being thin, these sheets maintain good mechanical strength, which is important for the structural integrity of the battery.

  • Thermal Stability: Nickel's good thermal stability ensures that it can withstand the heat generated during charging and discharging cycles without degrading.

  • Ease of Processing: These thin sheets can be easily fabricated using standard manufacturing techniques, facilitating mass production.

The 0.1, 0.2, and 0.3 mm thickness pure nickel sheets are commonly used in applications such as electric vehicles, portable electronics, renewable energy storage systems, and backup power solutions. Their versatility and high-performance characteristics make them a preferred choice for manufacturers looking to optimize the efficiency and longevity of their lithium battery products.

Product Description

Nickel Sheet for Battery Specification


Name
CS welding nickel tab nickel plated steel sheet
Material
nickel plated steel
dimension
Customized according to customers
Application
Battery Pack Connector. for lithium battery, prismatic battery
Craft
Solder the Nickel Sheet onto Brass Sheet.
Colour
Customizable
weight
Customized according to customers
Apply
Electric Power Transmission
Manufacturer
ARDIA
Place Of Origin
Guangdong,China
Processing Method
Stamping, bending, welding, electroplating


Applications


Pure nickel sheets in various thicknesses are used in lithium batteries for several critical components:

  • Current Collectors: Serve as the conductive substrate for the active materials in the electrodes, facilitating the flow of electrons.

  • Separator Supports: Can be used in supporting the separators that prevent direct contact between the positive and negative electrodes.

  • Contact Points: Utilized in creating reliable contact points within the battery pack, ensuring stable connections.

  • Structural Components: Used in the construction of battery cases and other structural elements that require a lightweight yet strong material.

Features & Advantages


  • High Purity: Made from pure nickel (Ni), ensuring consistent electrical conductivity and chemical stability.

  • Thickness Variants: Available in 0.1 mm, 0.2 mm, and 0.3 mm thicknesses, providing flexibility in battery design and optimization.

  • Corrosion Resistance: Nickel's inherent properties resist corrosion, making it ideal for use in harsh environments and prolonged exposure to electrolytes.

  • Strength and Durability: Despite being thin, pure nickel offers good tensile strength and durability, which are essential for maintaining the integrity of battery components.

  • Conductivity: Excellent electrical conductivity supports efficient current flow, contributing to improved battery performance.

  • Surface Finish: Smooth surface finish minimizes internal resistance and improves the overall efficiency of the battery.

  • Customization: Ability to tailor the material to specific dimensions and requirements, aiding in the integration with different battery types and sizes.

Usages


  • Lithium-Ion Batteries: Essential in the production of rechargeable lithium-ion batteries found in portable electronics, electric vehicles, and stationary energy storage systems.

  • Lithium-Polymer Batteries: Integral in the flexible and lightweight design of lithium-polymer batteries used in drones, wearable technology, and other compact devices.

  • Research and Development: Valuable for researchers developing new battery chemistries and improving existing battery technologies.


Advantages in Usage:

  • Enhanced Performance: The use of pure nickel contributes to better battery performance due to its high conductivity and low internal resistance.

  • Longevity: Corrosion-resistant properties extend the lifespan of the battery, leading to fewer replacements and reduced costs.

  • Environmental Stability: Pure nickel's stability under various environmental conditions makes it suitable for a wide range of applications, from consumer electronics to industrial settings.

  • Efficiency: The material's properties help in achieving higher energy density and better thermal management in batteries.

By utilizing 0.1, 0.2, or 0.3 mm thick pure nickel in lithium batteries, manufacturers can benefit from enhanced performance, durability, and safety, making it a preferred choice for high-quality battery components.


FAQ

  1. What is a Custom Cell Spacing Belt Pure Nickel for Lithium Battery?

    • It is a specialized product consisting of high-purity nickel strips that are custom-shaped and sized to provide precise spacing and secure connections between lithium battery cells.

  2. Why is high-purity nickel used for these belts?

    • High-purity nickel is used due to its excellent electrical conductivity and corrosion resistance, which are crucial for maintaining the performance and longevity of the lithium battery pack.

  3. How are the custom cell spacing belts made?

    • The belts are made through a process that includes material preparation, cutting, shaping, surface treatment, and spot welding to the battery cells to ensure reliable electrical connections.

  4. What are the benefits of using custom cell spacing belts in lithium batteries?

    • Using custom cell spacing belts ensures consistent and reliable electrical connections, contributing to the overall performance and longevity of the battery pack.

  5. Where are these custom cell spacing belts commonly used?

    • These belts are commonly used in applications requiring high-reliability power sources, such as electric vehicles, portable electronics, renewable energy storage systems, and backup power solutions.



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