CNC Vibrating Blade Cutting Machine for Honeycomb Board – Manufacturer
CNC Oscillating Knife Cutting Machine, 1600×2500mm Working Area, 9kW, CCD Camera Positioning — configured with oscillating knife, creasing wheel and V-cutting tool heads for honeycomb board, corrugated cardboard and packaging sample production.
- Magnesium-aluminum vacuum table with split box zoning holds small carton parts flat during full-cut and crease cycles
- CCD mark-point and panoramic recognition confirmed on buyer’s printed stock before order
Sample cutting report provided on the buyer’s own board material at specified caliper, documenting edge quality and crease depth prior to commitment.
Laser process focus — we match CO2 or fiber sources to your non-metal or sheet metal stock before quoting, rather than selling a single wattage across all materials.
Technical Specifications
| Parameter | Value |
|---|---|
| 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% |
| Table Type | Flat working table or auto feeding table |
| Tool Head Options | Swiss imported knife, oscillating knife, pneumatic knife, high-power vibrating knife, circular knife, V-cutting knife, drag knife, creasing wheel, dotted line knife, punching, brush |
| Visual Positioning | Small CCD camera mark point positioning, panoramic camera recognition positioning, projection positioning |
| Translational Velocity | 800–2000 mm/s |
| Repeatability | ≤ 0.1 mm |
| Transmission System | Digital servo motor (Delta or Panasonic optional), linear guide, synchronous belt, ball screw; Taiwan Hiwin rail |
| Instruction System | HP-GL compatible format |
| Software File Formats | PLT, DXF, AI |
| Vacuum Pump | 7.5 kW |
| Vacuum Table | Magnesium-aluminum alloy vacuum adsorption table, fluorocarbon PVDF powder spraying, integrated box adsorption platform |
| Safety Device | Infrared induction blocking, anti-collision, emergency stop |
| Control Panel | Touch screen, multiple language supported (English, Russian, Italian, Chinese, custom options) |
| Assembly State | Fully assembled |
| Certification | CE |
| Warranty | One year free warranty |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging & carton sample making | Corrugated cardboard, honeycomb board, plastic box |
| Advertising & signage | PVC sheet, sticker, film |
| Garment & footwear | Leather, fabric, textile, shoe material, luggage material, non-woven fabric |
| Automotive interior & gasket | Gasket material, composite materials |
| Soft furnishing & carpet | Carpet, sponge, cloth |
| Composite & foam fabricators | Foam board, PU, EVA, XPE, PVC, PP, PE, PTFE, ETFE, fiberglass, rubber, carbon fiber |
When "Standard" Honeycomb Cutting Leaves Crushed Cores and Ragged Edges
A generic flatbed cannot cut glass-fiber reinforced honeycomb without rapid blade wear and edge delamination.
Many buyers specify a machine based solely on the working area, only to discover that the standard oscillating knife setup cannot handle the actual caliper and density of their composite board. The cutting depth falls short, the foam core crushes under downward pressure, and the tool head requires replacement far sooner than expected [NEED_CITE: material thickness versus tool stroke requirements]. This mismatch forces production managers to run slower speeds or accept lower edge quality, directly impacting daily sample output and die-line accuracy.
Matching Knife Stroke and Frequency to Board Caliper
The CNC oscillating knife cutting machine for packaging and carton sample making must be configured with a knife stroke that exceeds the board thickness, particularly when processing multi-layer honeycomb or fluted corrugated. A high-power vibrating knife handles dense composite cores, while a standard oscillating knife suits lighter grey board and single-wall corrugated. Selecting the correct tool head prevents the blade from dragging through the substrate, which causes edge fraying and accelerates wear on the cutting tip.
Vacuum Zoning for Small-Part Geometry
Packaging prototypes often contain small tabs, locking slots and intricate fold lines that a full-sheet vacuum hold-down cannot secure. The magnesium-aluminum alloy vacuum table with integrated box adsorption allows zoning, so suction concentrates under the specific part being cut rather than across the entire bed. This prevents lightweight honeycomb offcuts from lifting during high-speed contour passes, maintaining the ≤ 0.1 mm repeatability required for precise carton assembly [NEED_CITE: vacuum hold-down requirements for small packaging components].
Reading the Engineering: Servo Drive, Linear Rail and CCD Tracking
The digital servo motor (Delta or Panasonic optional) paired with a Taiwan Hiwin linear guide and ball screw delivers the translational velocity range of 800–2000 mm/s while holding tight positional tolerance. For printed packaging stock, the small CCD camera mark point positioning or panoramic camera recognition positioning tracks registration marks at production speed, ensuring the creasing wheel and V-cutting knife align with the printed die-line. The HP-GL compatible instruction system accepts PLT, DXF and AI files, so your existing nesting workflow imports without manual conversion.
The Hidden Cost of Skipping the Sample Cut
Ordering a machine without first testing your actual board grade and flute profile often results in a configuration that cannot reach the required cutting depth or produces ragged edges on composite materials. The buyer then faces unplanned downtime while sourcing alternative tool heads or negotiating a table retrofit. A sample cutting report on your own material documents edge quality, crease depth and achievable speed before commitment, eliminating this risk [NEED_CITE: pre-shipment sample testing protocols].
Why Source This Platform Here
In-house design covers both knife and laser cutting technologies, allowing the cutting method to match the material rather than forcing one approach across all substrates. Tool head and table configurations are specified per your board grade and daily sample volume, not sold as a generic flatbed. CCD camera positioning for printed contour work is validated on your stock before order. Voltage, plug type and control panel language are confirmed to match your facility before production begins.
Documentation & Verification
- Machine specification sheet detailing every tool head and vacuum zone in the quoted build
- Electrical schematic confirming 380V ±10% or custom voltage match before shipment
- Sample cutting report on your honeycomb or corrugated board at specified caliper
- Software licence and file format note confirming PLT, DXF, AI compatibility
- Factory test record documenting repeatability and edge quality before dispatch
Installation, Commissioning & Support
- Fully assembled delivery; verify floor load capacity for 3450 × 2300 mm footprint
- Dedicated 380V ±10% circuit required for 9 kW rated power plus 7.5 kW vacuum pump
- First-run parameter setting for your specific board thickness and flute profile
- Operator training on tool head changeover between oscillating knife, creasing wheel and V-cutting knife
- Spare parts list covering Swiss imported knife blades and consumable creasing wheels
What We Need to Configure Your Machine
To recommend the correct tool head combination and vacuum zoning, provide your board material type, maximum caliper, flute profile and daily sample volume. Specify your facility voltage, frequency and preferred control panel language. If you work with printed stock, share a sample file so we can validate CCD mark tracking and nesting workflow compatibility before quotation.
Frequently Asked Questions
Q: How is cutting thickness capacity confirmed for my specific board grade and flute profile?
A: We require a physical sample of your actual board material at the maximum caliper you intend to process. A sample cutting test documents the edge quality, crease depth and achievable speed with the proposed tool head configuration, ensuring the machine meets your requirements before order confirmation.
Q: Which tool head combination do I need for full-cut, crease and V-slot on the same carton sample?
A: A typical packaging setup pairs an oscillating knife for full-cut contours, a creasing wheel for fold lines and a V-cutting knife for slotting. The exact combination depends on your board density and flute profile, confirmed during the sample cutting phase.
Q: Can the CCD camera track my printed registration marks at my required sample throughput?
A: Tracking capability depends on mark contrast, size and the speed of your contour passes. We test the small CCD camera or panoramic camera on your printed stock to verify reliable mark recognition at your target translational velocity before finalizing the configuration.
Q: Which file formats does the software accept, and is my existing nesting workflow supported?
A: The HP-GL compatible instruction system imports PLT, DXF and AI files. We validate your existing design files and nesting workflow against the software before order to ensure seamless data transfer without manual conversion or re-drawing.
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