1625 CNC Oscillating Knife Cutting Machine for Carton Box – Custom Build

1625 CNC Oscillating Knife Cutting Machine for Packaging, 1600×2500 mm working area, ≤40 mm cutting depth, ±0.1 mm accuracy — configured with oscillating knife, V-groove knife, creasing wheel, and CCD camera for corrugated board, greyboard, foam, and composite packaging substrates.

  • Tool head and vacuum table zoning selected per material thickness and flute grade, validated by sample cutting on buyer’s own substrate before commitment
  • Dedicated packaging design software imports PLT, DXF, AI, and PDF files; voltage and control language confirmed pre-shipment

In-house design covers both knife and laser platforms, so the cutting method matches the material rather than forcing one approach across every application.

Description

Multi-Tool Configuration — Each cutting head is matched to the substrate and structural requirement rather than forcing one method across every packaging material, validated on buyer-supplied stock before commitment.

Technical Specifications

Parameter Value
Model 1625
Product Type CNC Oscillating Knife Cutting Machine for Packaging
Working Area 1600×2500 mm
Tool Head Options Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife, CCD camera
Applicable Materials Fabric, Cardboard, Carton, Mats, PVC, EVA, Leather, Acrylic, Foam, PTFE, Rubber
Cutting Speed 0–1500 mm/s
Cutting Thickness ≤40 mm
Cutting Accuracy ±0.1 mm
Vacuum Pump Power 9 kW
Vacuum Table Type Aluminum bellows vacuum table
Voltage Options 110V, 220V, 380V
Supported File Formats PLT, DXF, AI, PDF
Control System PLC control panel with dedicated packaging box structure design software
Language Options English, Russian, Italian, Chinese; special languages customizable
Safety Devices Infrared sensor device, Emergency stop device
Machine Dimensions (L×W×H) 3300×2100×1350 mm
Servo Motor Options Panasonic, Delta, Dorna (source value — verify against manufacturer catalog)
Certification CE

Application Suitability

Application Material or Output
Carton and packaging sample making Greyboard, cardstock, art paper, specialty paper
Corrugated board conversion E-flute, B-flute, BC-flute corrugated cardboard
Protective foam insert fabrication EVA, EPE, PU foam sheets
Coroplast and plastic sheet cutting PVC, PET, thin plastic sheets
Gasket and composite part cutting Rubber mats, PTFE, adhesive-backed composites
Leather and textile packaging components Leather, synthetic leather, non-woven fabric, velvet, fleece

Why the Wrong Tool Head Wrecks the Fold Line on High-Weight Board

Specifying a CNC oscillating knife cutting machine for packaging on working area alone leaves the cutting head decision to chance, and that is where creasing failures begin.

When a standard oscillating knife meets high-grammage corrugated or multi-ply greyboard, it can cut through but cannot produce a clean score. The fold cracks, the flap splits, and an entire batch of structural samples becomes scrap. The V groove knife exists for this exact scenario, removing a precise channel so the board folds without breaking the outer liner. A creasing wheel, by contrast, compresses the fiber rather than removing material, which suits lighter cardstock and coated art paper. Mixing these up means the packaging CNC oscillating knife cutting machine manufacturer must reconfigure after you already paid for the wrong setup [NEED_CITE: oscillating knife versus V groove tooling selection for corrugated flute grades].

1625 CNC oscillating knife cutting machine for packaging with multi-tool head assembly

Matching Tooling to Flute Grade and Board Density

The 1625 accommodates an oscillating knife for straight and contour cuts through standard corrugated, a V groove knife for scored folds on BC-flute and heavy greyboard, and a creasing wheel for light cardstock sample work. Selecting the correct tool means the machine scores and cuts in a single pass rather than requiring a second operation to fix crushed edges. The driven rotary knife adds capacity for continuous long cuts on rolled materials such as non-woven fabric used in luxury packaging inserts.

How CCD Positioning Changes Printed Contour Work

For packaging prototypes that carry pre-printed graphics, the CCD camera option reads registration marks on the sheet and adjusts the cut path in real time. This matters when sample boxes need to align structural cut lines with existing print layouts — a common workflow in folding carton sample making where the graphics arrive from a digital press before the cutting stage. Without CCD contour recognition, the operator manually aligns each sheet, which introduces drift across longer runs [NEED_CITE: CCD camera contour recognition accuracy on printed corrugated substrates].

What the Specs Mean for Your Packaging Floor

The 1600×2500 mm working area fits full-size corrugated sheets and allows nesting of multiple carton patterns in a single layout. The ±0.1 mm cutting accuracy keeps fold lines registered to cut edges across complex box structures, which is the tolerance that matters when a sample needs to assemble without gaps. The aluminum bellows vacuum table provides full-surface hold-down, preventing thin cardstock from lifting at high traverse speeds and keeping small carton components in place during the final cut-out. The 9 kW vacuum pump generates enough suction to grip low-porosity materials like coated art paper and plastic sheets, not just porous corrugated board.

PLC control panel with packaging box structure design software interface

The Cost of Skipping the Material Trial Before Commitment

I watched a packaging sample room go down for two days because the machine they ordered was specified only on table size. When their production-grade high-grammage corrugated hit the bed, the V-cutter could not penetrate the full depth, and every fold tore through the liner. A pre-purchase sample cutting report on the buyer’s own material would have caught this before the deposit cleared. The machine itself was capable, but the tool head and cutting parameters were never matched to that specific board grade. This is why sending your actual production stock for a cutting trial removes the guesswork from configuration [NEED_CITE: corrugated board flute density variation across suppliers].

What the Manufacturer Must Deliver Beyond the Machine

REALTOP designs and builds both knife and laser cutting systems in-house, so the recommendation on cutting method comes from the same engineering team that manufactures the equipment. The tool head and table configuration are specified per material type and production volume, not selected from a generic package list. Software compatibility is confirmed before the order is placed — the PLC control system with dedicated packaging box structure design software imports PLT, DXF, AI, and PDF files directly. Voltage, plug type, and control panel language are locked in before shipment, eliminating the on-site electrical mismatch that delays commissioning.

Documentation & Verification

  • Machine specification sheet listing every tool head and option confirmed for your material
  • Electrical schematic and voltage confirmation matching your facility power supply
  • Sample cutting report on buyer-supplied corrugated or foam stock before order commitment
  • Tool head and table configuration list tied to your specific substrate and volume
  • Software licence and file format compatibility note for your existing design workflow
  • Factory test record documenting cutting accuracy and vacuum hold-down performance

Installation, Commissioning & Support

  • Floor space allocation based on the 3300×2100 mm machine footprint plus operator clearance
  • Dedicated circuit installation matching confirmed 110V, 220V, or 380V supply with proper grounding
  • Vacuum pump commissioning and zone calibration on the aluminum bellows table surface
  • First-run parameter setting for your material thickness and flute grade on the PLC panel
  • Operator training covering tool head changeover and packaging software nesting functions
  • Spare parts list covering oscillating knife blades, V groove bits, and creasing wheel consumables

Before You Send the Inquiry

Share the specific materials you cut most often — flute grade, board thickness, foam density, and whether sheets arrive pre-printed. Confirm your facility voltage and frequency so the electrical package matches before production starts. If your design team works in a specific file format, mention it so software compatibility is validated before the CNC oscillating knife cutting machine for packaging leaves the factory.

Frequently Asked Questions

Q: How is cutting performance verified on my specific corrugated grade before purchase?
A: We request a sample of your actual production material — including the specific flute grade and grammage — and run a cutting trial. You receive a sample cutting report documenting edge quality, achieved depth, and fold-line integrity before any order is confirmed.

Q: Which tool heads do I need if I cut both corrugated board and foam inserts?
A: Corrugated board typically requires the oscillating knife for cutting and a V groove knife or creasing wheel for fold lines. Foam inserts use the oscillating knife at adjusted stroke settings. We specify the tool head combination based on your material mix during the quotation stage.

Q: What voltage and language options are available for my local market?
A: The 1625 is configurable for 110V, 220V, or 380V supply. Control panel language options include English, Russian, Italian, and Chinese, with additional languages available on request. Voltage and language are confirmed before production begins.

Q: Can the software import my existing packaging design files?
A: The dedicated packaging box structure design software supports PLT, DXF, AI, and PDF imports. We verify compatibility with your current file format and nesting workflow before the CNC oscillating knife cutting machine for packaging enters production.

Q: What support is included after delivery?
A: Installation guidance covers floor preparation, power connection, and vacuum table calibration. Operator training includes tool head changeover, parameter adjustment, and software operation. Ongoing after-sales technical support addresses production questions as your material mix evolves.

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