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PRODUCT PARAMETERS

Multi-functional split sealing machine for pouch lithium batteries.

Combines top sealing, side sealing, electrolyte filling, vacuum standing, and first-stage vacuum sealing.

Temperature up to 200°C, vacuum ≤-90KPa, seals battery size up to L180×W180×H10mm.

Glove box compatible.

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Description

5 In 1 Sealing Machine (Split) – Pouch Cell Top/Side Sealing, Electrolyte Filling & Vacuum Sealin

This 5 In 1 Sealing Machine (Split) is a comprehensive solution designed to meet the production requirements for pouch lithium batteries. It integrates five essential functions into a single, compact system: top sealing, side sealing, first-stage vacuum sealing, electrolyte filling, and vacuum standing. The split design allows flexible placement, with the main unit suitable for glove box operation.

Machine Sections & Functions:

1. Top and Side Sealing Section

This section handles both top and side sealing without requiring a head change. Resistance heating elements transfer heat to the brass sealing head, which then applies thermal energy to the aluminum-laminated film. Under controlled pressure, the film softens to a near-molten state, achieving reliable bonding and sealing.

2. Electrolyte Filling and Vacuum Standing Section (Filling Pump Optional)

Operators place batteries vertically in fixtures for electrolyte filling. A precision pump (optional) dispenses accurate electrolyte volumes. After filling, the operator manually closes the pressing plate, forming a sealed chamber with the lower cavity. The equipment then creates a vacuum environment for standing, with programmable duration up to 99.99 seconds.

3. First-Stage Vacuum Sealing Section (Vacuum Pump Optional)

This section forms a sealed chamber between upper and lower cavities. The system evacuates the chamber to achieve negative pressure. Simultaneously, the heated sealing head softens the aluminum-laminated film to create a hermetic seal under vacuum conditions.

Key Features:

  • Five Functions in One: Combines top sealing, side sealing, electrolyte filling, vacuum standing, and first-stage vacuum sealing.
  • Split Design: Main unit fits inside glove boxes; electric cabinet remains outside for space efficiency.
  • Precision Temperature Control: Adjustable up to 200°C with recommended 180°C for optimal sealing.
  • High Vacuum Capability: Reaches ≤-90KPa for effective degassing and sealing.
  • Flexible Sealing Parameters: Time adjustable 0–99 seconds, edge width customizable.
  • Large Capacity: Accommodates batteries up to L180×W180×H10mm (including air bag and tabs).
  • Dual Gas Compatibility: Operates with argon/nitrogen inside glove boxes or compressed air outside.
  • User-Friendly Controls: Intuitive interface for setting temperature, time, vacuum, and standing duration.

Applications:

  • Pouch lithium battery prototyping and R&D
  • Small-batch production of soft-pack batteries
  • Electrolyte filling and vacuum sealing operations
  • Glove box-based battery assembly

Technical Parameters

ParameterSpecificationRemarks
Upper/Lower Head TemperatureSuggested 180°CMax. 200°C
Vacuum DegreeMax. ≤ -90KPaAdjustable
Sealing TimeRecommend 3–6s0–99s adjustable
Sealing Thickness≤0.5mm
Head Length200mm
Sealable Battery SizeMax L180×W180×H10mmIncluding air bag and tabs
Edge Width5mm (standard)Customizable
Filling PumpOptionalAdditional charge
Standing Time0–99.99sProgrammable
Gas Source0.6–0.8MPa argon/nitrogen (inside glove box)0.5–0.8MPa compressed air (outside glove box)
Power SupplyAC220V/50Hz or AC110V/60HzCustomizable
Power Consumption1700W
Equipment Dimensions≈ L700 × W280 × H330 mmMain unit
Electric Cabinet Dimensions≈ L460 × W230 × H330 mmSeparate unit
Packaged Dimensions≈ L1100 × W540 × H620 mm
Net Weight≈ 65 kg
Gross Weight≈ 88 kg
Usage SiteCan be used inside glove boxCheck space compatibility
Warranty1 year warrantyLifetime maintenance

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OUR battery equipment's PROJECT
Lithium battery equipment factory work scenario
Lithium battery equipment installation scenario
Certificates:Integrated gas purifier system and PLC controller
used for keeping inert gases by recirculation

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