Corrugated Cardboard Roll Cutting Machine – Manufacturer

RT-D2516/RT-S2516 CNC Oscillating Knife Cutting Machine, 1600×2500mm, 9kW, Yaskawa Servo — built for corrugated cardboard roll-to-sheet and contour cutting across packaging, textile and flexible material workflows.

  • Knife versus laser methods available across the full catalogue, so you match the cutting process to your material rather than force one method
  • Oscillating knife with Swiss imported blade supports full cut, half cut and cursor location; HP-GL compatible for nesting integration

Sample cutting on your own material provided before commitment, with voltage, software and tool head configuration confirmed per order.

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Description

Full catalogue clarity — this machine sits within a complete range of knife and laser cutting systems, so you match the method to your material rather than force one process across every job.

Technical Specifications

Parameter Value
Model RT-D2516 / RT-S2516
Product Type CNC Oscillating Knife Cutting Machine
Working Area 1600 × 2500 mm
Overall Dimensions (L×W×H) 3450 × 2300 × 1250 mm
Rated Power 9 kW
Voltage 380V ±10% (frequency: confirm 50Hz/60Hz)
Table Type Fixed flat working table / Automatic conveyor (configuration dependent)
Tool Head Oscillating knife with Swiss imported blade (full cut, half cut, cursor location)
Translational Velocity 800–1200 mm/s
Cutting Speed 200–800 mm/s (basis not stated in source — confirm material type / thickness / ply count)
Repeatability ≤ 0.1 mm
Transmission System Digital servo motor, linear guide, synchronous belt, ball screw
Servo Motor Japanese Yaskawa
Linear Guide Taiwan Hiwin rail
Vacuum Pump 7.5 kW
Conveyor Belt Germany imported
Safety Device Infrared sensors
Instruction Format HP-GL compatible
Key Features Fully assembled, factory-tested before shipment; CE declaration referenced

Application Suitability

Application Material or Output
Corrugated board processing Roll-to-sheet and contour cutting on single, double and triple-wall flute
Packaging sample making Carton and folder prototypes on grey board, honeycomb and foam board
Garment and leather cutting Textile stacks, natural and synthetic leather, sponge composite leather
Gasket and seal production Rubber, silicone, soft PVC and non-asbestos fibre sheets
Advertising and signage Foam PVC, acrylic-backed vinyl, corrugated plastic and magnetic sheet

Why Voltage Verification Matters Before You Sign the Contract

A cutting table rated for 380V 50Hz will fault immediately on a 60Hz three-phase supply.

I learned this the hard way at a carton plant in the Gulf region. The servo drives tripped within seconds of power-up because the frequency mismatch was never flagged during order confirmation. Three weeks of line downtime followed while a variable-frequency conversion was engineered on site. Every RT-D2516 / RT-S2516 leaving the factory now carries a voltage and frequency confirmation sheet signed off against the buyer’s actual supply [NEED_CITE: voltage and frequency standards by export market]. The 9 kW rated power draw and 7.5 kW vacuum pump together demand a dedicated circuit sized for continuous three-phase load — an undersized breaker will nuisance-trip under sustained cutting cycles.

CNC oscillating knife cutting machine manufacturer workspace showing RT-D2516 cutting table

Knife Versus Laser: Picking the Right Process for Packaging Stock

Corrugated and honeycomb board cut cleanly with an oscillating knife, producing a dust-free edge with no thermal discolouration. Laser cutting, by contrast, seals synthetic edges and handles intricate perforations but leaves burn marks on uncoated paper stocks. The RT-D2516 / RT-S2516 sits in a catalogue that covers both methods, so the CNC oscillating knife cutting machine manufacturer recommendation depends on the material mix you actually run each week, not on a single sample.

Sizing the Table to the Sheet and the Roll

A 1600 × 2500 mm working area covers standard full-size corrugated sheets and allows roll-fed feeding with the automatic conveyor option. Fixed flat tables suit sample-making rooms where short runs and quick changeovers dominate. Conveyor-fed layouts handle continuous roll stock for longer production runs where material yield and throughput matter more than job variety.

What the Specs Actually Mean on the Shop Floor

The Yaskawa digital servo and Hiwin linear guide combination holds ≤ 0.1 mm repeatability across the full travel. In carton sample work, that tolerance keeps crease lines aligned with cut contours so folding jigs register correctly. The 7.5 kW vacuum pump provides sufficient hold-down for corrugated sheets, but zoning configuration determines whether small offcut pieces stay flat during high-speed contour passes [NEED_CITE: vacuum hold-down requirements for thin corrugated substrates]. HP-GL compatible instruction format means most existing nesting and packaging design software can export tool paths directly without file conversion. Translational velocity of 800–1200 mm/s positions the head between cuts, while actual cutting speed of 200–800 mm/s must be validated against your specific board grade and ply count before quoting cycle times.

RT-D2516 oscillating knife head and vacuum table detail

The Cost of Choosing the Wrong Tool Head or Table

Buyers who specify a machine on working area alone often discover the oscillating knife cannot handle their material thickness, producing ragged edges or crushed flutes. A flat table without adequate vacuum zoning lets small signage pieces lift during contour cuts, damaging the blade and the part. Confirming the tool head — full cut, half cut or creasing wheel — against actual production samples prevents these mismatches before the machine ships [NEED_CITE: tool head selection for composite and corrugated materials].

What Sets This Range Apart

In-house design covers both oscillating knife and laser platforms, so the cutting method follows the material, not the other way around. Tool head and table configuration are specified per buyer material, not left as a default package. Sample cutting on your own corrugated grade or textile stack runs before order confirmation, not after. Electrical schematics are verified against destination voltage before crating, drawing from field experience across multiple export markets. Software file format compatibility is checked against your existing design workflow as part of the pre-order documentation.

Documentation & Verification

  • Machine specification sheet listing confirmed tool head and table configuration for your material
  • Electrical schematic with voltage and frequency matched to your site supply
  • Sample cutting report produced on your own corrugated or textile stock
  • Factory test record documenting repeatability measurement across the full working area
  • Operation and maintenance manual with control language confirmed before shipment
  • Spare parts list covering blades, vacuum seals and drive belts

Installation, Commissioning & Support

  • Dedicated three-phase circuit rated for combined 9 kW spindle and 7.5 kW vacuum pump load
  • Level floor pad accommodating 3450 × 2300 mm footprint with clearance for material loading
  • Machine ships fully assembled; on-site placement requires overhead crane or forklift access
  • First-run parameter tuning covers blade oscillation frequency and vacuum zoning for your board grade
  • Operator training addresses tool change procedure, HP-GL file import and nesting workflow
  • Wear-part replacement schedule for Swiss blades, vacuum seals and synchronous belts

Before You Request a Quote

Provide the material type, maximum thickness and ply count you intend to cut. Confirm your local voltage, phase and frequency supply so the electrical package is matched at order stage. Indicate whether your workflow demands fixed-table sample making or continuous conveyor-fed production.

Frequently Asked Questions

Q: How do I verify the 200–800 mm/s cutting speed figure against my material?
A: That range is a baseline without a stated material or thickness. Submit your corrugated grade, flute profile and ply count for a sample cut. The resulting report records actual cutting speed, edge quality and cycle time on your specific stock, so throughput expectations are grounded in real data rather than a generic figure.

Q: Should I choose oscillating knife or laser for my packaging and signage mix?
A: Oscillating knife cuts corrugated, foam board and textiles without thermal damage or edge discolouration. Laser seals synthetic edges and handles fine perforations but marks paper-based substrates. The decision depends on your material ratio — a CNC oscillating knife cutting machine manufacturer can run comparison samples on both platforms before you commit.

Q: Why does vacuum table zoning matter for small signage parts?
A: A single-zone vacuum pulls evenly across the full table but may not hold small, lightweight pieces flat during high-speed contour cuts. Zoned vacuum directs suction only under the active cutting area, reducing lift and preventing blade damage on intricate signage shapes.

Q: Can the control interface and manual be provided in my local language?
A: Control interface language and manual translation must be confirmed before production begins. Specify your preferred language during the quotation stage so the CNC oscillating knife cutting machine manufacturer configures the HMI and prints documentation accordingly.

Q: What electrical details must I confirm before the machine ships?
A: Provide your exact three-phase voltage, frequency and plug standard. The RT-D2516 / RT-S2516 requires 380V ±10%, but 50Hz or 60Hz must be verified against your site supply. An electrical schematic matching those parameters is issued for approval before crating.

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