CNC Die Cut Machine 1600x3200mm Auto Knife – OEM Available

RT-D2516 / RT-S2516 / RT-R2513 CNC Digital Flatbed Cutting Machine, 1600×2500mm working area, ≤18mm cutting thickness, multi-tool head with oscillating knife, creasing wheel and round punch.

  • Vacuum table with aluminum alloy honeycomb structure and zoned adsorption holds small cardboard and sticker parts flat during cutting
  • Rack transmission with imported linear guide delivers <0.05mm repeated accuracy across full sheet formats for carton sample making

Sample cutting on buyer’s own material confirms edge quality, creasing depth and tool head match before order commitment.

Description

Precision Tooling Configuration — cutting depth and edge quality verified on your specific cardboard flute and sticker substrate before the machine leaves our Jinan workshop.

Technical Specifications

Parameter Value
Product Type CNC Digital Flatbed Cutting Machine (Oscillating Knife)
Model RT-R2513 / RT-D2516 / RT-S2516
Working Area 2500×1300mm (RT-R2513); 1600×2500mm (RT-D2516 / RT-S2516)
Machine Size 3550×1910×1400mm (RT-R2513); 3450×2300×1250mm (RT-D2516 / RT-S2516)
Cutting Thickness ≤18mm
Cutting Tools Oscillating knife, Creasing tool, Kiss-Cut Knife Tool, Round punch
Fixing Method Vacuum system (aluminum alloy honeycomb structure)
Vacuum Pump 7.5 kW
Rated Power 9 kW
Servo Motor Dongling servo (Delta servo motor optional)
Transmission Rack transmission with imported straight-line square guide
Repeated Accuracy <0.05mm
Voltage 380V
Profile Formats DXF, OLT, PDF, AI
Data Transmission Ethernet port
Safety Device Infrared sensors, emergency stop devices
Software Professional carton nesting software included
Blade Supply 10 pieces of oscillating blades included
Warranty 1 year (excluding consumables: felt, knife blades)
Delivery Time <30 working days

Application Suitability

Application Material or Output
Carton and packaging sample making Corrugated cardboard, grey board, art paper
Cardboard box production Large electrical appliance cartons, express paper boxes
Snack and gift packaging Food-grade carton, high-end gift box board
Sticker and label contour cutting Vinyl, PP paper, adhesive labels, stickers
Signage and hang tags Billboard material, business card stock, hang tag board

Why "Peak Power" Claims Miss the Point for Packaging Materials

Blade cutting delivers consistent depth on cardboard and labels without relying on a laser power rating that may not reflect continuous output.

When buyers evaluate laser machines for packaging work, they often see a peak power figure and assume it translates to cutting capacity. In practice, a laser rated at a peak wattage may fall short on continuous cutting depth, especially through denser corrugated flutes or multi-layer label stock. An oscillating knife CNC digital flatbed cutting machine approaches the problem differently: depth is set by blade stroke and tool head configuration, not by a wattage number that can vary between peak and continuous output. [NEED_CITE: laser peak versus continuous power rating standards]

I remember a packaging buyer who came to us after a laser unit left burnt edges on his gift box prototypes. The thermal seal was unwanted on art paper, and the continuous power was insufficient for his thicker flute grades. Switching to a mechanical knife process removed both problems at once.

CNC oscillating knife cutting machine working on corrugated cardboard packaging samples

Cold Cutting Eliminates Thermal Damage on Packaging Stock

Laser cutting seals edges on synthetics, which is valuable for textiles and acrylics. For cardboard, stickers, and paper-based packaging, that same thermal effect produces discolored edges and an acrid smell in the workshop. The CNC digital knife cutting machine for packaging sample making uses an oscillating blade that slices through fibers cleanly, leaving a natural edge that requires no post-processing and accepts ink or coating without interference from melt residue.

Creasing and Cutting in a Single Setup

Packaging prototyping demands both cutting outlines and pressing fold lines in the same production run. The creasing tool on this platform scores the board to a controlled depth without cutting through, so a single flatbed sheet exits the table as a finished, fold-ready carton blank. This removes the need for a separate creasing press and keeps registration between cut lines and fold lines within the machine’s <0.05mm repeated accuracy. [NEED_CITE: packaging sample making workflow standards]

Spec Interpretation for Real Production Conditions

The aluminum alloy honeycomb vacuum table is divided into zones, which matters directly when cutting small sticker or label parts. A single-zone vacuum would lose suction across the unused area, allowing lightweight pieces to lift under the knife head. Zoned adsorption concentrates hold-down force only where material is present. The 7.5 kW vacuum pump generates sufficient negative pressure for dense corrugated board at full sheet size, while the rack transmission and imported straight-line square guide maintain positional accuracy across the entire 1600×2500mm working area. The 9 kW rated power covers the servo drive, vacuum pump, and oscillating head simultaneously without requiring a separate power circuit beyond the 380V supply.

Vacuum table zoning detail showing aluminum honeycomb structure and hold-down capacity

The Hidden Cost of Skipping Material Trials

A buyer who specifies a machine solely by working area dimensions may discover that the vacuum hold-down is insufficient for their smallest label parts, or that the creasing tool cannot reach the depth required by their heaviest flute grade. Edge quality on kiss-cut stickers depends on blade condition and oscillation frequency matched to the adhesive layer. Without a sample cut on the buyer’s actual material, these variables remain assumptions rather than confirmed parameters. [NEED_CITE: material trial protocols for CNC cutting equipment]

What We Build Into Every Shipment

In-house design covers both knife and laser platforms, so the cutting method is matched to the material rather than forced into one technology. Tool head and table configuration are specified per material and production volume, not quoted as a default package. Software compatibility is confirmed against the buyer’s existing DXF, AI, or PDF workflow before the order is finalized. Voltage, plug type, and control panel language are documented and verified before shipment. Sample cutting on the buyer’s own material is conducted and reported before commitment, so edge quality and creasing depth are confirmed results, not promises.

Documentation & Verification

  • Machine specification sheet listing confirmed tool head and table configuration for your material
  • Electrical schematic and voltage confirmation matching your local supply standard
  • Sample cutting report produced on your specific cardboard grade and sticker stock
  • Software licence and file format compatibility note covering DXF, OLT, PDF, and AI
  • Factory test record documenting accuracy and cutting performance before dispatch
  • Spare parts list with blade and felt consumable specifications

Installation, Commissioning & Support

  • 380V dedicated circuit required; verify local voltage and frequency before production scheduling
  • Machine footprint up to 3450×2300mm requires clear floor space with level concrete substrate
  • Vacuum pump and servo system calibrated on-site during commissioning with your material
  • Ethernet data port configured to your network for DXF and AI file transfer from design station
  • Oscillation frequency and blade depth set to your specific cardboard thickness during training
  • Ten oscillating blades supplied for initial production; reorder schedule based on your daily volume

What We Need to Quote Accurately

Send us your material type, flute grade or board thickness, maximum sheet size, and the smallest label or sticker dimension in your product range. Confirm your local voltage and frequency, preferred control language, and whether your existing design files are in DXF, AI, or PDF format. If you need creasing on your carton stock, tell us the fold line depth your packaging design requires so we can configure the creasing tool before the machine enters production.

Frequently Asked Questions

Q: How is cutting thickness verified for my specific cardboard grade and flute type?
A: We request a sample of your actual production material and run test cuts at our facility before the order is confirmed. The sample cutting report documents edge quality, creasing depth, and achievable speed on your specific flute grade and board density, so the configuration is validated rather than estimated.

Q: Is the vacuum table zoning sufficient for small sticker and label parts?
A: The aluminum alloy honeycomb table is divided into independently controlled zones. You activate only the zones covered by your material, concentrating suction on small label pieces and preventing lift during oscillating knife cutting, even at full stroke frequency on lightweight vinyl or PP stock.

Q: Can the software import my existing DXF and AI files directly?
A: The included carton nesting software accepts DXF, OLT, PDF, and AI formats. We verify file compatibility against your existing design workflow before shipment and confirm that layer recognition, cut line assignment, and creasing line detection function correctly with your standard file export settings.

Q: What voltage and control language options are confirmed before shipment?
A: Voltage, plug type, and control panel language are confirmed in writing before production begins. The standard configuration runs on 380V, but we document your local supply requirements and adjust the electrical system accordingly, with a signed specification sheet serving as the build reference.

Q: How do I confirm creasing depth and edge quality before placing the order?
A: Our sample cutting process includes creasing trials on your actual board stock. The resulting sample report shows fold line depth, creasing wheel pressure settings, and edge condition after cutting, giving you physical evidence of the machine’s output on your packaging material before commitment.

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