Automatic Cardboard Puzzle Cutting Machine for Packaging – Full Range
RT-D2516/RT-S2516 Packaging CNC Cutting Machine, 1600×2500mm Working Area, 9kW, Multifunctional Oscillating Knife Head — designed for corrugated board, cardboard puzzle and flexible material prototyping with Swiss-imported vibration knife supporting full cut, half cut and creasing.
- Survey our complete knife cutting catalogue to match tool head, vacuum zoning and CCD positioning to your specific packaging material and daily volume, rather than selecting on working area alone.
- HP-GL compatible instruction system and auto-feeding conveyor integrate directly into your existing packaging design workflow.
Sample cutting on your own corrugated or cardboard stock is available before order, with full tool head configuration list and voltage confirmation provided.
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Quick, reliable shipping to any location.
Free & easy returns
Return this item by mail or in store within 90 days for a full refund.
Full catalogue access — Match knife or laser cutting to corrugated, card stock and flexible substrates instead of forcing one method across every packaging job.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | RT-D2516/RT-S2516 |
| Product Type | CNC Oscillating Knife Cutting Machine for Packaging and Cardboard |
| Working Area | 1600 × 2500 mm |
| Overall Dimensions | 3450 × 2300 × 1250 mm |
| Rated Power | 9 kW |
| Table Type | Flatbed vacuum table with conveyor belt |
| Vacuum Pump | 7.5 kW |
| Multifunctional Head | Swiss imported knife; oscillating full cut, half cut and cursor location |
| Translational Velocity | 800–1200 mm/s |
| Repeated Accuracy | ≤ 0.1 mm |
| Transmission System | Digital servo motor, linear guide, synchronous belt, ball screw |
| Instruction System | HP-GL compatible format |
| Voltage | 380 V ± 10 % |
| Safety Device | Infrared sensors |
| Key Components | Japanese Yaskawa servo, Taiwan Hiwin rail, Germany imported conveyor belt |
Application Suitability
| Application | Material or Output |
|---|---|
| Corrugated box prototyping and sampling | Single, double and triple-wall corrugated board |
| Cardboard puzzle cutting | High-density laminated grey board and chipboard |
| Packaging sample making | Folding carton stock, kraft and coated card |
| Flexible material processing | Leather, PVC, soft glass, silicone, rubber, sponge composite |
Why "Working Area" Alone Decides Nothing on a Packaging CNC Cutting Machine
A flatbed table sized to your sheet is only the starting point; tool head, vacuum zoning and material test together decide whether the cut holds tolerance at production pace.
I once shipped a vibratory knife table to a puzzle maker who confirmed board size and machine footprint over email. The sheets we tested were standard corrugated stock and the cuts were clean. After the machine landed, the operator loaded high-density laminated grey board — the blade could not penetrate the laminate layer, edges feathered and the entire first batch was scrapped [NEED_CITE: material verification before shipment]. That job taught everyone on the floor to send production material, not a proxy sample, before a packaging CNC cutting machine is configured.
Knife Versus Laser: Reading the Full Equipment Menu
Buyers often arrive with a fixed idea — knife for everything flexible, laser for everything rigid — and real jobs rarely sort that neatly. A corrugated sample that needs both a crease and a kiss-cut scores better with a creasing wheel plus oscillating blade on the same head, while a thin polypropylene window patch may seal its own edge under a CO2 beam. Surveying the complete catalogue of cutting tables, rather than locking onto a single model number, lets a packaging shop place each substrate against the method that actually holds edge quality.
From Compact Sampling Tables to Continuous Conveyor Lines
A design studio cutting ten box prototypes a day does not need a 7.5 kW vacuum pump and an auto-feeder; a carton factory running short gasket and packaging runs across two shifts does. The RT-D2516/RT-S2516 sits in the middle of this range with a 1600 × 2500 mm bed and a conveyor belt that lets operators load sheet after sheet without stopping the spindle. Matching daily volume to table format before signing a purchase order removes the most common reason a machine gets replaced within its first year [NEED_CITE: equipment replacement causes in packaging workshops].
How the Spec Sheet Translates on the Shop Floor
The 9 kW rated power covers the oscillating head, the Yaskawa servo drives and the vacuum pump combined, so the figure tells an electrician what dedicated circuit to pull rather than promising cutting force. A repeated accuracy of ≤ 0.1 mm matters most when nesting puzzle pieces: a 0.3 mm drift across a 2500 mm sheet accumulates into visible gaps on a 500-piece board. HP-GL compatibility means most existing packaging CAD packages export directly without an intermediate conversion step, which is where registration errors usually enter. Translational velocity rated at 800–1200 mm/s applies to straight traverses on thin stock; dense grey board and multi-ply corrugated reduce effective speed, a distinction buyers should confirm against their own material.
What Misconfigured Tooling Costs After Delivery
A drag knife ordered for dense foam will crush the surface before it cuts through, leaving a ridge that no amount of post-trimming fixes. A vacuum table without selectable zones lets small die-cut parts lift off the bed mid-cycle, and the blade follows the lifted edge instead of the programmed path. Software that cannot import the buyer’s nesting files forces a re-draw in the machine’s own editor, doubling prepress time on every new job [NEED_CITE: software compatibility losses in digital finishing]. These are all avoidable once tool head, zoning and file format are written into the order document.
What the Manufacturer Brings to This Machine Range
In-house design covers both knife and laser heads, so the same engineering team specifies whichever method suits the material rather than handing the buyer off to a separate supplier. Tool head and vacuum zoning are written per substrate, confirmed by a sample cut on the buyer’s own stock before the order is locked. CCD camera positioning is available on models that handle printed contour work, and software compatibility is verified against the buyer’s file format prior to production. Voltage, control language and plug type are recorded on the electrical schematic so the machine matches the destination workshop.
Documentation & Verification
- Machine specification sheet listing every selected tool head and table zone
- Electrical schematic confirming voltage, frequency and plug for the destination market
- Sample cutting report on the buyer’s corrugated, grey board or PVC stock
- Software licence and file format compatibility note tied to the buyer’s CAD package
- Factory test record showing repeated accuracy on the actual sheet size ordered
- Spare parts list covering blades, vacuum cups, belts and sensor cables
Installation, Commissioning & Support
- Floor space of at least 3450 × 2300 mm plus clearance for the conveyor infeed on the RT-D2516/RT-S2516
- Dedicated 380 V ± 10 % three-phase circuit rated for the combined 9 kW load
- Machine shipped on a flatbed crate; table and gantry re-assembled and levelled on site
- First-run commissioning includes vacuum zoning calibration against the buyer’s smallest part
- Operator training covers tool change, HP-GL file import and crease-depth setting
- Spare oscillating blades, conveyor belt sections and vacuum cups shipped in the crate
Preparing a Meaningful Inquiry
Send the actual substrate, thickness range and largest sheet size the machine will see, along with the daily sample or production volume expected on that material. Specify the voltage, frequency and plug type at the destination workshop, plus the control language the operators read. If the packaging CAD package is already in use, attach one representative file so software compatibility can be confirmed before the order.
Frequently Asked Questions
Q: How do I choose between knife and laser cutting for packaging prototyping?
A: Knife heads handle corrugated, grey board and foam without melting the edges and support creasing on the same station. Laser cuts acrylic windows, engraves wood templates and seals synthetic textiles. When a single package uses both a folded carton and a clear window, two separate tables or a combination head are the practical options.
Q: Will the vacuum table hold very small die-cut parts in place?
A: The 1600 × 2500 mm bed on the RT-D2516/RT-S2516 is divided into selectable zones, so operators can activate only the area under the workpiece. For parts smaller than roughly 50 mm across, a spoilboard or fixture template is usually added to keep the part flat under the oscillating knife.
Q: Does the control system speak the same language as my existing packaging CAD?
A: The instruction system accepts HP-GL compatible files, which covers the majority of packaging design packages. If a shop uses a proprietary nesting format, a sample file sent before order lets the factory confirm import paths and flag any conversion steps that could shift registration.
Q: How are working area and multi-head options matched to daily volume?
A: A single-head table suits studios running prototypes and short runs. Multi-head or conveyor-fed configurations are specified when the same profile repeats across long shifts. The RT-D2516/RT-S2516 sits in the mid-range with auto feeding available for continuous sheet loading between jobs.
Q: Is there a single catalogue comparing every available table format?
A: Yes — the full equipment range is published so buyers can compare compact sampling tables, mid-format production machines and large-format conveyor systems side by side, then match the chosen method to substrate, thickness and daily output.
Full catalogue access — Match knife or laser cutting to corrugated, card stock and flexible substrates instead of forcing one method across every packaging job.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | RT-D2516/RT-S2516 |
| Product Type | CNC Oscillating Knife Cutting Machine for Packaging and Cardboard |
| Working Area | 1600 × 2500 mm |
| Overall Dimensions | 3450 × 2300 × 1250 mm |
| Rated Power | 9 kW |
| Table Type | Flatbed vacuum table with conveyor belt |
| Vacuum Pump | 7.5 kW |
| Multifunctional Head | Swiss imported knife; oscillating full cut, half cut and cursor location |
| Translational Velocity | 800–1200 mm/s |
| Repeated Accuracy | ≤ 0.1 mm |
| Transmission System | Digital servo motor, linear guide, synchronous belt, ball screw |
| Instruction System | HP-GL compatible format |
| Voltage | 380 V ± 10 % |
| Safety Device | Infrared sensors |
| Key Components | Japanese Yaskawa servo, Taiwan Hiwin rail, Germany imported conveyor belt |
Application Suitability
| Application | Material or Output |
|---|---|
| Corrugated box prototyping and sampling | Single, double and triple-wall corrugated board |
| Cardboard puzzle cutting | High-density laminated grey board and chipboard |
| Packaging sample making | Folding carton stock, kraft and coated card |
| Flexible material processing | Leather, PVC, soft glass, silicone, rubber, sponge composite |
Why "Working Area" Alone Decides Nothing on a Packaging CNC Cutting Machine
A flatbed table sized to your sheet is only the starting point; tool head, vacuum zoning and material test together decide whether the cut holds tolerance at production pace.
I once shipped a vibratory knife table to a puzzle maker who confirmed board size and machine footprint over email. The sheets we tested were standard corrugated stock and the cuts were clean. After the machine landed, the operator loaded high-density laminated grey board — the blade could not penetrate the laminate layer, edges feathered and the entire first batch was scrapped [NEED_CITE: material verification before shipment]. That job taught everyone on the floor to send production material, not a proxy sample, before a packaging CNC cutting machine is configured.
Knife Versus Laser: Reading the Full Equipment Menu
Buyers often arrive with a fixed idea — knife for everything flexible, laser for everything rigid — and real jobs rarely sort that neatly. A corrugated sample that needs both a crease and a kiss-cut scores better with a creasing wheel plus oscillating blade on the same head, while a thin polypropylene window patch may seal its own edge under a CO2 beam. Surveying the complete catalogue of cutting tables, rather than locking onto a single model number, lets a packaging shop place each substrate against the method that actually holds edge quality.
From Compact Sampling Tables to Continuous Conveyor Lines
A design studio cutting ten box prototypes a day does not need a 7.5 kW vacuum pump and an auto-feeder; a carton factory running short gasket and packaging runs across two shifts does. The RT-D2516/RT-S2516 sits in the middle of this range with a 1600 × 2500 mm bed and a conveyor belt that lets operators load sheet after sheet without stopping the spindle. Matching daily volume to table format before signing a purchase order removes the most common reason a machine gets replaced within its first year [NEED_CITE: equipment replacement causes in packaging workshops].
How the Spec Sheet Translates on the Shop Floor
The 9 kW rated power covers the oscillating head, the Yaskawa servo drives and the vacuum pump combined, so the figure tells an electrician what dedicated circuit to pull rather than promising cutting force. A repeated accuracy of ≤ 0.1 mm matters most when nesting puzzle pieces: a 0.3 mm drift across a 2500 mm sheet accumulates into visible gaps on a 500-piece board. HP-GL compatibility means most existing packaging CAD packages export directly without an intermediate conversion step, which is where registration errors usually enter. Translational velocity rated at 800–1200 mm/s applies to straight traverses on thin stock; dense grey board and multi-ply corrugated reduce effective speed, a distinction buyers should confirm against their own material.
What Misconfigured Tooling Costs After Delivery
A drag knife ordered for dense foam will crush the surface before it cuts through, leaving a ridge that no amount of post-trimming fixes. A vacuum table without selectable zones lets small die-cut parts lift off the bed mid-cycle, and the blade follows the lifted edge instead of the programmed path. Software that cannot import the buyer’s nesting files forces a re-draw in the machine’s own editor, doubling prepress time on every new job [NEED_CITE: software compatibility losses in digital finishing]. These are all avoidable once tool head, zoning and file format are written into the order document.
What the Manufacturer Brings to This Machine Range
In-house design covers both knife and laser heads, so the same engineering team specifies whichever method suits the material rather than handing the buyer off to a separate supplier. Tool head and vacuum zoning are written per substrate, confirmed by a sample cut on the buyer’s own stock before the order is locked. CCD camera positioning is available on models that handle printed contour work, and software compatibility is verified against the buyer’s file format prior to production. Voltage, control language and plug type are recorded on the electrical schematic so the machine matches the destination workshop.
Documentation & Verification
- Machine specification sheet listing every selected tool head and table zone
- Electrical schematic confirming voltage, frequency and plug for the destination market
- Sample cutting report on the buyer’s corrugated, grey board or PVC stock
- Software licence and file format compatibility note tied to the buyer’s CAD package
- Factory test record showing repeated accuracy on the actual sheet size ordered
- Spare parts list covering blades, vacuum cups, belts and sensor cables
Installation, Commissioning & Support
- Floor space of at least 3450 × 2300 mm plus clearance for the conveyor infeed on the RT-D2516/RT-S2516
- Dedicated 380 V ± 10 % three-phase circuit rated for the combined 9 kW load
- Machine shipped on a flatbed crate; table and gantry re-assembled and levelled on site
- First-run commissioning includes vacuum zoning calibration against the buyer’s smallest part
- Operator training covers tool change, HP-GL file import and crease-depth setting
- Spare oscillating blades, conveyor belt sections and vacuum cups shipped in the crate
Preparing a Meaningful Inquiry
Send the actual substrate, thickness range and largest sheet size the machine will see, along with the daily sample or production volume expected on that material. Specify the voltage, frequency and plug type at the destination workshop, plus the control language the operators read. If the packaging CAD package is already in use, attach one representative file so software compatibility can be confirmed before the order.
Frequently Asked Questions
Q: How do I choose between knife and laser cutting for packaging prototyping?
A: Knife heads handle corrugated, grey board and foam without melting the edges and support creasing on the same station. Laser cuts acrylic windows, engraves wood templates and seals synthetic textiles. When a single package uses both a folded carton and a clear window, two separate tables or a combination head are the practical options.
Q: Will the vacuum table hold very small die-cut parts in place?
A: The 1600 × 2500 mm bed on the RT-D2516/RT-S2516 is divided into selectable zones, so operators can activate only the area under the workpiece. For parts smaller than roughly 50 mm across, a spoilboard or fixture template is usually added to keep the part flat under the oscillating knife.
Q: Does the control system speak the same language as my existing packaging CAD?
A: The instruction system accepts HP-GL compatible files, which covers the majority of packaging design packages. If a shop uses a proprietary nesting format, a sample file sent before order lets the factory confirm import paths and flag any conversion steps that could shift registration.
Q: How are working area and multi-head options matched to daily volume?
A: A single-head table suits studios running prototypes and short runs. Multi-head or conveyor-fed configurations are specified when the same profile repeats across long shifts. The RT-D2516/RT-S2516 sits in the mid-range with auto feeding available for continuous sheet loading between jobs.
Q: Is there a single catalogue comparing every available table format?
A: Yes — the full equipment range is published so buyers can compare compact sampling tables, mid-format production machines and large-format conveyor systems side by side, then match the chosen method to substrate, thickness and daily output.

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