Products
Ultra Thin 0.3mm Porous Nickel Plate For High Performance Ni Batteries
Engineered Stress Buffer Zones
Integrated Gas Venting Pathways
Micro-Interlocking Surface Mechanism
Rapid Thermal Equalization Framework
Structural Integrity Maintenance
Engineered specifically for advanced nickel-based batteries, this 0.3mm ultra-thin porous nickel plate redefines current collector efficiency. Its structural architecture enables seamless integration into compact battery designs, where minimal thickness and maximized active material loading are critical. The material's continuous porous network ensures uninterrupted electron pathways while facilitating rapid ionic movement-key to sustaining high power output and extending cycle life under demanding operational conditions.
Ideal for high-rate Ni-MH and Ni-Cd systems, the plate serves as both current collector and mechanical scaffold, stabilizing electrode integrity during repeated charge-discharge cycles. Its optimized pore configuration enhances electrolyte accessibility and gas diffusion, addressing common limitations in power-intensive applications such as hybrid electric powertrains and industrial-grade energy storage solutions. By unifying extreme thinness with robust conductivity, this platform sets a new benchmark for next-generation nickel battery performance.
Products Specifications
| Material | Pure Nickel | |||
|
Filtration grade/Pore size |
10um |
|||
|
Size |
200*300 or Customized |
|||
|
Thickness |
0.3mm | |||
|
Technique |
Sintering |
|||
Products Features

Three-Dimensional Current Collection: Electrons flow freely through the interconnected 3D network within the material, establishing an efficient spatial current collection system that significantly enhances electrode conductivity.
Engineered Stress Buffer Zones: The specially designed interconnected pores accommodate volume changes of active materials during cycling, preventing stress concentration and electrode structure damage.
Integrated Gas Venting Pathways: Precisely engineered connected channels facilitate rapid gas dissipation during charge-discharge cycles, preventing gas accumulation and improving operational safety.

Micro-Interlocking Surface Mechanism: The surface features abundant microscopic textured structures that physically interlock with active materials, effectively preventing material detachment.
Rapid Thermal Equalization Framework: The innate thermal conductivity of nickel, combined with the 3D connected architecture, enables swift heat distribution and dissipation during operation, maintaining isothermal conditions.
Structural Integrity Maintenance: The robust porous substrate maintains its configuration under repeated stress variations during extended use, providing durable and reliable electrode support.
applications
Electrode Substrate for High-Power Battery Systems
Serves as a critical current-carrying backbone in nickel-based power cells, enabling robust charge-discharge performance for demanding automotive and industrial applications.
Thermal-Managed Backup Power Solutions
The material's inherent heat distribution characteristics maintain operational stability in elevated temperature environments, suitable for continuous-duty backup power installations.
Durable Matrix for Deep-Cycle Storage Systems
The structural integrity of the porous framework supports extended cycle life in frequently cycled industrial energy storage configurations.
Safety-Enhanced Sealed Battery Platforms
Integrated gas transport channels improve overcharge tolerance in sealed cell designs, meeting stringent safety requirements for sensitive electronic systems.
Space-Optimized Power Sources for Compact Electronics
The sub-millimeter profile enables innovative thin-form-factor battery designs for advanced portable devices and miniaturized electronics.
Extreme Environment Power Components
Consistent structural performance across wide temperature ranges supports reliable operation in specialized industrial and technological applications.
Contact us
Tel: 0917-3873009
Phone: +86 18992731201
Email: zhangjixia@bjygti.com
Fax: 0917-3873009
Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China
Whatsapp: +86 18992731201
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