PE Battery Separator Base Film 16μm, 60 mm x 100 m

$176.00

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Wet-process polyethylene (PE) separator base film supplied as Wet processPE 16μm 60mm*100m. The source data provides a complete thickness, transport, shrinkage, strength, and thermal profile.

SKU: AF-BM-S-PE00-16R2-0000
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PE Battery Separator Base Film 16μm, 60 mm x 100 m

Product Overview

Wet-process polyethylene (PE) separator base film supplied as Wet processPE 16μm 60mm*100m. The source data provides a complete thickness, transport, shrinkage, strength, and thermal profile.

Product Details

Product name PE Battery Separator Base Film 16μm, 60 mm x 100 m
Source specification Wet processPE 16μm 60mm*100m
Process / coating side Wet process; uncoated
Material Polyethylene (PE)
Process Wet process
Base-film thickness 16 μm
Total thickness 16 μm
Width 60 mm
Roll length 100 m
Areal density 8.8 g/m²
Porosity 39%
Air permeability 224 sec
Thermal shrinkage MD 1.2%
Thermal shrinkage TD 0.1%
Tensile strength MD 192 kg/cm³
Tensile strength TD 156 kg/cm³
Puncture strength 535 g
Melting temperature 135 °C

Important Note

Note: Slight variations may occur between different production lots of the battery separator. The performance indicators are guaranteed to comply with our product specifications.

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EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The AFSPPE16U60mm100m PE separator requires strict environmental control during storage and transportation. Exposure to heat, sunlight, or moisture can cause structural degradation and compromise validation performance.

  • Sealed Container Storage: Store the separator in a sealed container at room or low temperature in a dry and ventilated environment.
  • Heat and Fire Avoidance: Keep the separator away from fire and heat sources to prevent thermal damage.
  • Sunlight Protection: Avoid exposing the separator to direct sunlight during storage and transportation.
  • Moisture Protection: Protect the separator from rain and excessive moisture during transportation.
  • Structural Integrity: Handle the separator carefully to avoid structural degradation before validation.

How does the porosity and air permeability of the AFSPPE16U60mm100m PE separator affect lithium-ion transport in manganese-based battery systems?

The separator's 39% porosity and 224 S air permeability are engineered to optimize ion transport channels while maintaining mechanical integrity. This reduces internal resistance and supports consistent lithium-ion transfer kinetics, which is critical for high-rate cycling stability in lithium-rich manganese-based battery systems.

Why is this wet-process PE separator specifically recommended for lithium-rich manganese-based battery systems?

The homogeneous PE elemental distribution and 16 μm thickness with minimal heat shrinkage (1.2% MD) ensure uniform ion distribution and structural integrity during high-energy cycling. These characteristics directly address the thermal and mechanical demands of manganese-based cathodes, which are prone to voltage fade and structural degradation.

What are the critical storage and handling requirements for this wet-process PE separator to prevent structural degradation?

Store the separator in a sealed container at room or low temperature in a dry, ventilated environment. Keep away from fire, heat sources, and direct sunlight. During transportation, avoid rain and fire baking to prevent premature structural degradation before validation.

The AFSPPE16U60mm100M wet-process PE separator is specified at 16 μm total thickness with 39% porosity, 224 s air permeability, and 1.2%/0.1% MD/TD heat shrinkage, making it suited for lithium-rich manganese-based cell validation where thickness uniformity and ion-transport consistency are required.

Positive

  • Uniform wet-process PE matrix: Homogeneous PE elemental distribution across the sub-micron porous matrix supports cell-to-cell consistency and baseline testing control in electrolyte validation platforms.
  • Low heat shrinkage for cycling stability: Micro-engineered structure achieves 1.2% MD and 0.1% TD heat shrinkage with a 135 °C melting temperature, preserving structural integrity during high-energy validation cycling.

Trade-offs

  • Controlled storage environment required: Must be stored in a sealed container at room or low temperature in a dry, ventilated area; exposure to fire, heat sources, sunlight, or rain can cause structural degradation before validation.
  • Specialized application scope: Engineered specifically for lithium-rich manganese-based battery systems and related electrochemical cell validation, so broader separator applications are not indicated by the manufacturer.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).