Loading...
Menu

Ceramic Coated Separator 12+2μm

{{ product.price_format }}
Price on Request
{{ product.origin_price_format }}
Stock:
SKU:{{ product.sku }}
Model: {{ product.model }}
weight: {{ product.weight }} product.

{{ variable.name }} : {{ variable.values[selectedVariantsIndex[variable_index]].name }}

{{ value.name }}

Product Overview

Huizhou BestGemo New Energy’s Ceramic Coated Separator 12+2μm is a precision-engineered microporous membrane designed for lithium-ion batteries where thermal stability and mechanical integrity are critical. This variant features a 12μm base film with a 2μm ceramic coating, offering a balanced combination of thickness and safety performance. The separator is coated with aluminum oxide (Al₂O₃) ceramic particles, which create a rigid, heat-resistant inorganic layer on the base film. This inorganic coating actively enhances the separator’s ability to withstand high operating temperatures, reducing the risk of thermal runaway in demanding energy storage and power battery applications. The ceramic layer also reinforces the membrane structure, providing a robust physical barrier against internal short circuits caused by electrode penetration or dendritic growth.

Engineered with a controlled porosity range of 40–50%, this separator maintains an optimal balance between ionic conductivity and mechanical strength. The Al₂O₃ coating improves the separator’s wetting properties with standard carbonate electrolytes, promoting uniform ion distribution across the electrode surface. By significantly raising the thermal resistance threshold to ≥180°C and ensuring a peel strength of at least 50 N/m, this product offers a dependable foundation for battery cells that require consistent performance under both normal cycling and elevated temperature stress. The 12+2μm configuration is particularly suitable for applications where a moderate thickness is needed to achieve a balance between energy density and safety.

Key Features

  • High Thermal Resistance: Rated for continuous operation at temperatures up to and exceeding 180°C, this separator resists shrinkage and maintains dimensional stability, helping to prevent internal short circuits in high-temperature environments.
  • Enhanced Puncture Strength: The ceramic Al₂O₃ coating forms a hard, abrasion-resistant surface that provides superior resistance to puncture from electrode particles or lithium dendrites, reducing the likelihood of micro-shorts.
  • Controlled Porosity (40–50%): Optimized pore structure allows for efficient electrolyte absorption and lithium-ion transport while providing the mechanical rigidity necessary for robust cell assembly.
  • High Peel Strength (≥50 N/m): Ensures excellent adhesion of the ceramic layer to the base film, preventing delamination during slitting, stacking, or winding processes in high-speed battery manufacturing.
  • Optimized Thickness (12+2μm): This specific configuration offers a balanced thickness that provides adequate mechanical support while maintaining a relatively thin profile, contributing to improved energy density in cell designs.
  • Inert Inorganic Coating: The aluminum oxide ceramic layer is chemically stable and does not react with common lithium-ion electrolytes, contributing to long-term cell cycle life and consistency.

Technical Specifications

项目 Item单位 Unit规格 Spec
规格 Specμm12+2
孔隙率 Porosity%40 ~ 50
剥离强度 Peel StrengthN/m≥50
耐温 Thermal Resistance≥180

Applications

This Ceramic Coated Separator 12+2μm is specifically formulated for lithium-ion cells where operational safety and high-temperature endurance are paramount. It is suited for both cylindrical and prismatic cell designs, as well as pouch-type cells that require a robust mechanical barrier against internal deformation. The product is particularly recommended for battery chemistries that operate with higher nominal voltages or generate more heat during rapid charge and discharge cycles. The 12+2μm thickness offers a practical compromise for applications that require a slightly thicker separator for enhanced safety without significantly compromising energy density.

  • High-energy-density lithium-ion cells for electric vehicles (EVs) and hybrid electric vehicles (HEVs).
  • Grid-scale and residential energy storage systems (ESS) where long-duration operation and thermal stability are required.
  • Power tools and industrial equipment batteries exposed to frequent high-rate discharging.
  • Specialty battery cells operating in elevated ambient temperature environments.
  • Safety-critical applications such as backup power units and medical device batteries.

Quality Assurance

  • Every production batch undergoes strict process control to maintain consistent thickness, porosity, and coating uniformity across the full width of the membrane.
  • Each roll is subjected to a full inspection protocol before shipment, including visual checks and dimensional measurement to verify compliance with the stated specifications.
  • Peel strength and thermal resistance are tested using standardized procedures to confirm that the ceramic coating remains bonded and effective under stress.
  • Technical support is available to assist with product integration, and material samples can be provided for evaluation prior to bulk adoption.

OEM/ODM Customization

Huizhou BestGemo New Energy offers a range of customization options for customers with specific cell design requirements. While standard thickness configurations are available from stock, we can accommodate requests for tailored coating weights and custom roll widths to fit unique slitting or winding lines. Please contact our engineering team to discuss your specific electrochemical and mechanical targets; we will work with you to adjust product parameters within our manufacturing capabilities to suit your application needs.

Nginx server needs to configure pseudo-static rules, click View configuration method