Products Cell Assembly & Filling Equipment Pouch Cell Assembly Equipment Laboratory Battery Vacuum Standing Box for Electrolyte Soaking
Laboratory Battery Vacuum Standing Box for Electrolyte Soaking

Pouch Cell Assembly Equipment

Laboratory Battery Vacuum Standing Box for Electrolyte Soaking

Item Number : RB33

Price varies based on specs and customizations


Vacuum Degree
More than -95KPa (buyer provides vacuum pump)
Chamber Internal Volume
L320mm*W320mm*H175mm
Resting Time Setting
0-9999S adjustable
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Product Overview

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This laboratory battery vacuum standing box is designed to support electrolyte absorption during the electrolyte-filling stage for pouch cells and cylindrical cells. By creating a sealed low-pressure chamber, the equipment removes air from the cell and allows electrolyte to flow downward through the cell structure under its own gravity. This promotes more complete contact between the electrolyte and electrode assembly before subsequent battery-processing steps.

The system is suited to laboratory battery development, sample preparation, and multi-format cell work where operators need a practical method for vacuum standing after injection. Its chamber accommodates different battery sizes, while adjustable settings help users adapt the process to individual cell requirements. The separated main-unit and control-box design also supports installation either inside a glove box or alongside a production line.

Built with quality electrical components and materials, this unit combines a corrosion-resistant aluminum-alloy chamber with cylinder-driven chamber movement and guided alignment. Stable vacuum holding, a specified leakage limit, visible chamber observation, and programmable cyclic operation provide a dependable process platform for electrolyte-infusion work under demanding laboratory conditions.

Key Features

  • Deep Vacuum Electrolyte Absorption: The sealed chamber can achieve a vacuum degree of more than -95KPa when the buyer provides a vacuum pump. Vacuum removes air from the cell so electrolyte can flow more effectively through the cell structure and integrate with the electrode core.

  • Stable Vacuum Holding: The equipment is designed to maintain vacuum with limited downward fluctuation during the holding period. Its sealing performance is specified to limit air leakage to no more than -1KPa in one minute, supporting controlled standing conditions after electrolyte filling.

  • Programmable Resting Cycle: Resting time is adjustable from 0-9999S, and pressure is adjustable to support process setup requirements. Multi-stage cyclic operation enables repeated vacuum-standing steps, helping operators pursue more complete electrolyte integration where the process calls for it.

  • Pouch and Cylindrical Cell Compatibility: The chamber is intended for both pouch batteries and cylindrical batteries across different specifications and sizes. Straightforward adjustment helps laboratories change between supported cell formats without a complex setup process.

  • Pneumatic Guided Chamber Movement: A pneumatic cylinder drives the upper chamber, while two linear guide sleeves provide accurate guidance. This arrangement enables flexible vertical movement and helps maintain the sealing requirements when the upper chamber presses against the bottom flat plate.

  • Corrosion-Resistant Chamber Construction: The chamber is made from aluminum alloy for corrosion resistance and structural strength. This material selection supports repeated exposure to the electrolyte-processing environment described for this equipment.

  • In-Process Viewing Window: A transparent viewing window allows operators to observe changes inside the chamber during operation. Direct visibility supports process monitoring without opening the sealed chamber during the vacuum-standing cycle.

  • Split Main Unit and Control Box: The main operating section and control section are separate. This configuration permits the equipment to be placed in a glove box for controlled-atmosphere work or positioned on a production line according to the laboratory or pilot workflow.

  • Compact Laboratory-Oriented Layout: The operating chamber section has a compact stated footprint and the equipment is described as easy to operate, small in size, and light in weight. These characteristics make it suitable as a multifunctional laboratory device where installation space and accessibility matter.

Applications

Application Description Key Benefit
Pouch Cell Electrolyte Filling Used after electrolyte injection into pouch cells to evacuate air and hold the cells under vacuum so electrolyte can flow through the internal cell structure. Helps promote improved electrolyte contact with the electrode core.
Cylindrical Cell Electrolyte Filling Supports vacuum standing for cylindrical batteries after electrolyte has been introduced, using the same low-pressure principle to remove internal air. Accommodates cylindrical cell work within a laboratory battery-preparation process.
Battery R&D Cell Preparation Provides a controlled vacuum-standing step for research teams preparing battery samples and evaluating cell fabrication procedures. Adjustable resting time and pressure support process-oriented laboratory work.
Glove Box Battery Processing The separated control architecture allows the operating section to be placed in a glove box, using the glove box working gas as the pneumatic cylinder power source at the specified pressure. Supports integration into glove-box-based battery workflows.
Pilot-Line Cell Processing The equipment can also be positioned on a production line where a compact vacuum-standing station is required after cell injection. Split installation supports flexible line or bench placement.
Multi-Format Battery Laboratory Work Adjustable chamber use supports different battery specifications and dimensions for laboratories handling more than one supported cell format. Simplifies changeover between pouch-cell and cylindrical-cell tasks.
Electrolyte Integration Cycle Development Multi-stage cycle operation can be used when a workflow requires repeated vacuum-standing actions for electrolyte fusion evaluation. Provides programmable cycle functionality for refining the standing process.

Technical Specifications

Parameter Specification
Site-Facing Identifier RB33
Equipment Type Laboratory battery vacuum standing box
Primary Application Electrolyte absorption during electrolyte filling of pouch cells and cylindrical cells
Working Principle The upper chamber presses against the bottom flat plate to form a sealed chamber. Vacuum is drawn for a set time to remove air from the cell; electrolyte flows downward along the cell under its own gravity to improve integration with the electrode core.
Power Supply 220V/50Hz
Power 0.5KW
Compressed Air Source 0.4~0.5Mpa
Glove Box Pneumatic Requirement When used inside a glove box, the cylinder power source must use the working gas used inside the glove box at 0.4~0.5Mpa.
Chamber Internal Volume L320mmW320mmH175mm
Chamber Material Aluminum alloy
Chamber Material Properties Corrosion resistant; structurally strong
Upper Chamber Drive Pneumatic cylinder
Upper Chamber Guidance Two linear guide sleeves
Chamber Observation Viewing window for observing changes inside the chamber during operation
Resting Time Setting 0-9999S adjustable
Pressure Setting Adjustable
Operation Mode Multi-stage cyclic operation
Vacuum Degree More than -95KPa (buyer provides vacuum pump)
Working Negative Pressure Principle Vacuum can be drawn to -90KPa negative pressure state for air removal from the cell
Vacuum Holding Stable during holding; vacuum degree has limited downward fluctuation
Sealing Performance Air leakage within 1 minute no more than -1KPa
Supported Battery Types Pouch batteries and cylindrical batteries
Battery Size Adaptability Suitable for batteries of different specifications and sizes; adjustment is simple and convenient
Installation Configuration Main unit and control box are separate
Installation Locations Can operate inside a glove box or on a production line
Operating Chamber Section External Dimensions Approx. L500mmW350mmH630mm
Weight Approx. 70KG
Control Section Reference Approx. 70KG

Why Choose This Product

  • Process-Focused Vacuum Performance: The equipment combines deep vacuum capability, stable holding behavior, and a stated one-minute leakage limit to support repeatable electrolyte-standing conditions.

  • Purposeful Mechanical Construction: Aluminum-alloy chamber construction, pneumatic actuation, and dual linear guidance provide a robust chamber-motion arrangement focused on sealing alignment and reliable operation.

  • Flexible Workflow Integration: A separate control box gives laboratories practical placement options, including glove-box operation and production-line use, without changing the fundamental vacuum-standing function.

  • Adaptable Operating Control: Adjustable resting time and pressure, together with multi-stage cyclic operation, give users process flexibility for pouch-cell and cylindrical-cell electrolyte work.

  • Practical Monitoring and Changeover: The viewing window supports visual observation during operation, while the chamber is designed for different battery specifications with convenient adjustment.

Contact us for a quote or a custom solution configured around your battery format, glove-box arrangement, and electrolyte-standing workflow.

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Product Datasheet

Laboratory Battery Vacuum Standing Box for Electrolyte Soaking

Category Catalog

Pouch Cell Assembly Equipment


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