Electrode Die Cutting Machine
Manual Benchtop Battery Electrode Sheet Cutting Knife
Item Number : MQ07
Price varies based on specs and customizations
- Cutting Length
- 380 mm
- Base Plate Dimensions
- 380 mm × 300 mm
- Blade Material
- High speed tool steel
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Product Overview


This manual benchtop battery electrode sheet cutting knife is designed for controlled laboratory cutting of positive and negative electrode sheets, as well as aluminum plastic film used in battery cell preparation. Its compact benchtop format provides a direct, operator-controlled method for preparing materials before cell assembly, testing, or further experimental processing.
The equipment combines a 380 mm cutting length with a 380 mm × 300 mm base plate, providing a practical working platform for laboratory-scale sheet preparation. A high speed tool steel blade, integrated pressure bar, and ruler support organized cutting work where consistent handling and clear dimensional reference are important.
The unit is suited to battery R&D laboratories, academic materials research, pilot-scale process development, and general laboratory preparation work. Its manually operated design keeps operation straightforward while reducing dependence on complex controls, making it appropriate for research environments that require flexible sample preparation and easy operator access.
Key Features
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380 mm Cutting Length: The long cutting length accommodates laboratory-scale positive and negative electrode sheets and supports efficient preparation across a broad working span.
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High Speed Tool Steel Blade: The cutting element is manufactured from high speed tool steel, providing a wear-resistant blade material suited to repeated laboratory cutting operations.
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Integrated Pressure Bar: The built-in pressure bar helps hold material in position during cutting, supporting controlled handling of electrode sheets and aluminum plastic film.
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Built-In Ruler: An integrated ruler provides a direct dimensional reference during setup and operation, helping operators align materials according to the requirements of each experiment.
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Dedicated Benchtop Format: The 380 mm × 300 mm base plate creates a defined working footprint for use on a laboratory bench, preparation table, or other suitable workstation.
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Manual Operating Method: Manual operation gives users direct control over material positioning and cutting motion. This is useful when researchers need to adjust sample preparation between experiments or work with different material formats.
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Battery Material Compatibility: The equipment is intended for cutting both positive and negative electrode sheets, covering common preparation steps within battery cell fabrication workflows.
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Aluminum Plastic Film Cutting: The unit also supports aluminum plastic film cutting, extending its usefulness from electrode preparation to pouch-cell component preparation.
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Laboratory-Oriented Construction: The combination of a defined base plate, pressure bar, ruler, and high speed tool steel blade provides a purpose-built configuration for organized laboratory material preparation.
Applications
| Application | Description | Key Benefit |
|---|---|---|
| Battery electrode preparation | Cut positive electrode sheets to the required laboratory sample dimensions before cell assembly or downstream testing. | Supports organized and repeatable preparation of cathode material samples. |
| Negative electrode preparation | Prepare negative electrode sheets for coin-cell, pouch-cell, or other laboratory battery development workflows where manual sheet cutting is appropriate. | Provides a dedicated cutting method for anode research activities. |
| Pouch-cell component preparation | Cut aluminum plastic film used in pouch-cell development and related packaging preparation tasks. | Extends one benchtop tool across both electrode and cell component preparation. |
| Battery R&D laboratories | Perform routine material cutting during formulation studies, process trials, and prototype cell preparation. | Offers a direct manual workflow that can adapt quickly between experiments. |
| Academic materials research | Support teaching laboratories and research groups investigating electrochemical materials, electrode structures, and cell fabrication methods. | Delivers an accessible preparation tool for controlled laboratory work. |
| Pilot process development | Prepare electrode and film samples during early-stage process evaluation before larger-scale equipment selection. | Helps researchers assess material handling requirements at laboratory scale. |
| Advanced materials research | Use the unit for controlled cutting of relevant sheet-form materials in materials science experiments where the specified cutting length is suitable. | Provides a defined working platform and integrated dimensional reference. |
Technical Specifications
| Parameter | Specification |
|---|---|
| Model | MQ07 |
| Primary application | Cutting positive and negative electrode sheets; cutting aluminum plastic film |
| Cutting length | 380 mm |
| Base plate dimensions | 380 mm × 300 mm |
| Blade material | High speed tool steel |
| Pressure bar | Included |
| Ruler | Included |
| Weight | 3.5 KG |
The 380 mm cutting length is the principal working dimension for evaluating material compatibility and laboratory workflow capacity. Buyers should compare this measurement with the width and format of the electrode sheets or aluminum plastic film used in their specific cell development process. The base plate dimensions define the equipment footprint and should be considered when planning bench layout, operator access, and adjacent material handling space.
The high speed tool steel blade identifies the cutting material supplied with the unit. This material selection is relevant for laboratories expecting repeated use and seeking a dedicated blade configuration for battery material preparation. The pressure bar and ruler are integrated functional features rather than optional accessories in the supplied configuration. The pressure bar supports material positioning during the cut, while the ruler provides a reference for alignment and dimensional setup.
The equipment is manually operated, so the operator remains responsible for positioning the material, confirming the intended cut location, and applying the cutting action. This operating method can be useful in research settings where sample formats change frequently or where operators need to inspect and adjust material placement between cuts. It also avoids the need for a programmable control interface for basic laboratory sheet preparation.
For procurement evaluation, the most important selection checks are the 380 mm cutting length, 380 mm × 300 mm base plate, high speed tool steel blade, and compatibility with the intended positive electrode sheets, negative electrode sheets, and aluminum plastic film. The listed 3.5 KG weight may also assist with laboratory bench planning, handling, and equipment relocation.
Because the reference specifications define the intended materials and principal construction details but do not provide a cutting-force rating, dimensional tolerance, blade replacement interval, or automation functions, these characteristics should be confirmed with the supplier when they are required by a particular production or validation procedure. The equipment should be selected according to the actual material thickness, format, and operating conditions of the planned application.
Why Choose This Product
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Purpose-Built Battery Preparation: The unit is configured specifically for positive electrode sheets, negative electrode sheets, and aluminum plastic film, making it relevant to core battery laboratory workflows.
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Practical Dimensional Control: The 380 mm cutting length, defined 380 mm × 300 mm base plate, and integrated ruler give procurement teams clear reference points for application and workspace evaluation.
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Durable Blade Material: High speed tool steel provides a purpose-selected cutting material for repeated laboratory use and supports a more durable equipment specification than an unspecified blade construction.
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Flexible Manual Operation: Direct operator control is suitable for research environments with changing sample formats, experimental iterations, and low-to-medium volume preparation requirements.
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Compact Laboratory Integration: The 3.5 KG configuration and benchtop design support straightforward placement and handling within battery R&D, academic, and materials research facilities.
For a quote, application review, or custom solution aligned with your electrode and aluminum plastic film preparation workflow, contact our technical team.
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Product Datasheet
Manual Benchtop Battery Electrode Sheet Cutting Knife
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