Products Electrode Fabrication Equipment Electrode Die Cutting Machine Laboratory Compact Hydraulic Positioning Die Cutting Machine
Laboratory Compact Hydraulic Positioning Die Cutting Machine

Electrode Die Cutting Machine

Laboratory Compact Hydraulic Positioning Die Cutting Machine

Item Number : MQ01

Price varies based on specs and customizations


Maximum Punching Size
120x80mm (can be customized according to customer requirements)
Punching Precision
±0.1 mm
Die-Cutting Stroke
35mm
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Product Overview

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This compact hydraulic positioning die cutting machine is designed for precision forming of battery positive and negative electrode sheets and lithium sheets. Its hydraulic drive, four-guide-post structure, and embedded pressure gauge support controlled, repeatable cutting in a small laboratory footprint. The equipment combines accurate material positioning with a smooth cutting action to help researchers prepare clean electrode shapes without burrs, powder shedding, or pressure marks.

The unit is particularly suited to battery research laboratories performing electrode-sheet preparation and lithium-sheet cutting before cell assembly. Its compact dimensions allow the equipment to be placed and operated inside a glovebox, supporting workflows where controlled handling of lithium materials is required. Fast die replacement also makes the system practical when laboratories need to change cutting geometries between research tasks.

Built around high-strength chrome steel structural components with environmentally friendly electroplating and coating treatment, this system is intended for dependable laboratory operation. The adjustable hydraulic pressure protection, stable guided movement, and non-vibration cutting design help protect both the operator and the die-cutting process during demanding research use.

Key Features

  • Glovebox-Compatible Compact Design: The equipment has a compact 223170325mm overall footprint and can be placed inside a glovebox. This supports battery electrode and lithium-sheet preparation where enclosed handling is part of the laboratory process.

  • Hydraulic Non-Vibration Cutting: Hydraulic drive raises the movable plate to actuate the die-cutting tool set. The cutting action is designed to operate without vibration or oil leakage, supporting stable material handling and clean cut formation.

  • Adjustable Pressure Protection: An integrated safety relief oil valve allows the working pressure to be adjusted as required. A pressure upper limit can also be set to reduce the risk of excessive pressure caused by incorrect operation.

  • Embedded Pressure Monitoring: The recessed pressure gauge provides direct visibility of applied cutting pressure. Operators can observe and accurately control pressure during the forming cycle rather than relying on an unmonitored manual action.

  • Precision Guided Motion: Four guide posts support smooth upper and lower movement with high positioning accuracy. This rigid guided structure is central to maintaining the specified ±0.1 mm punching precision throughout the 35mm die-cutting stroke.

  • Clean Electrode Edge Quality: The system is designed to produce formed pieces without burrs, powder shedding, or pressure marks. This is especially relevant for battery electrode sheets, where cut quality can affect the handling and consistency of prepared samples.

  • Fast Die Changeover: The die-cutting tool can be replaced conveniently and quickly. Laboratories can therefore move between supported electrode or lithium-sheet cutting shapes with less interruption to preparation work.

  • Long Die Service Life: Under normal use, the die is specified for at least 30,000 cutting cycles. This durability helps laboratories plan recurring sample preparation with a longer service interval for the cutting tool.

  • High-Strength Treated Structure: Structural components are made from high-strength chrome steel and treated with environmentally friendly electroplating and spray coating. The construction combines mechanical strength with a finished exterior that is straightforward to maintain.

  • Simple Manual Operating Cycle: The operator places the electrode sheet in the cutting position, closes the oil-release valve handwheel clockwise, and repeatedly moves the hand lever to apply pressure. Releasing the valve handwheel counterclockwise by half a turn opens the die automatically for part removal.

Applications

Application Description Key Benefit
Lithium-Ion Battery Electrode Preparation Die cutting of positive and negative electrode sheets into required specimen or cell-component shapes during battery research. Produces accurate cuts with a specified precision of ±0.1 mm and avoids burrs, powder shedding, and pressure marks.
Lithium Sheet Cutting Cutting and forming lithium sheets for laboratory battery work where enclosed material handling is needed. Compact equipment can be placed and operated inside a glovebox.
Battery R&D Cell Fabrication Preparation of electrode components before downstream laboratory cell assembly activities. Quick die replacement supports changes between cutting geometries used in research workflows.
Coin Cell Research Sample Preparation Forming small electrode pieces for battery research sample sets and comparative material studies. A maximum punching size of 120x80mm accommodates compact electrode-sheet cutting tasks.
Electrode Material Development Preparing consistently shaped positive or negative electrode specimens while evaluating active-material formulations and coating conditions. Hydraulic cutting without vibration supports stable forming of electrode sheets.
Academic Battery Laboratories Teaching and research laboratories preparing battery electrode or lithium-sheet samples in limited laboratory space. Small overall dimensions and straightforward manual operation suit compact laboratory environments.
Glovebox Battery Processing Enclosed preparation of lithium sheets and electrode pieces in workflows that require glovebox placement. The unit can be positioned within the glovebox while retaining pressure observation through its embedded gauge.
Repetitive Electrode Cutting Routine cutting of electrode sheets for ongoing battery R&D programs. Die life of at least 30,000 cycles under normal use supports repeated laboratory preparation.

Technical Specifications

Parameter Specification
Product Item Number MQ01
Suitable Materials Battery positive electrode sheets, battery negative electrode sheets, lithium sheets
Primary Function Die cutting and forming
Maximum Punching Size 120x80mm (can be customized according to customer requirements)
Punching Precision ±0.1 mm
Die-Cutting Stroke 35mm
Drive Method Hydraulic drive
Pressure Observation Embedded pressure gauge
Pressure Protection Built-in safety relief oil valve; adjustable pressure and settable pressure upper limit
Guided Structure Four guide posts
Die Replacement Convenient and quick replacement
Die Life ≥30,000 times under normal use
Cut Quality No burrs, powder shedding, or pressure marks
Operating Characteristics No vibration and no oil leakage during die cutting
Structural Material High-strength chrome steel
Surface Treatment Environmentally friendly electroplating and spray coating treatment
Glovebox Use Can be placed and operated inside a glovebox
Overall Dimensions 223170325mm
Weight 25kg
Manual Operating Sequence Place electrode sheet; tighten oil-release valve handwheel clockwise to the limit position; repeatedly move hand lever to raise and press; loosen handwheel counterclockwise by half a turn for automatic die opening and part removal

Why Choose This Product

  • Controlled Manual Hydraulic Performance: The embedded pressure gauge, adjustable safety relief valve, and pressure upper-limit setting give laboratory operators direct control over the cutting cycle and added protection against overpressure.

  • Precision-Oriented Mechanical Construction: Four guide posts provide smooth, accurately guided movement, while the specified ±0.1 mm punching precision supports consistent forming of battery electrode and lithium-sheet samples.

  • Built for Repeated Laboratory Use: High-strength chrome steel structural parts, protected surface treatment, and a die life of at least 30,000 cycles under normal use provide a robust foundation for routine research preparation.

  • Clean Results for Sensitive Materials: Hydraulic, non-vibration die cutting is designed to prevent burrs, powder shedding, and pressure marks, helping laboratories maintain better quality in prepared electrode pieces.

  • Efficient for Compact Battery Workflows: Glovebox compatibility, quick die replacement, compact dimensions, and a simple manual operating sequence make this equipment a practical premium choice for controlled battery R&D environments.

Contact us for a quote or a customized maximum punching size suited to your electrode and lithium-sheet cutting requirements.

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Product Datasheet

Laboratory Compact Hydraulic Positioning Die Cutting Machine

Category Catalog

Electrode Die Cutting Machine


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