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Multi Layers CNC Digital Textile Cutter | OEM Available

RT-D2516/RT-S2516 Multi-Layer CNC Digital Textile Cutter, 1600×2500mm, 9kW — engineered for high-volume fabric and composite material processing.

  • Built in-house with thick-walled welded steel frame and magnesium-aluminum vacuum platform for dimensional stability
  • Swiss oscillating knife head, CCD contour positioning and multi-format software compatibility for garment, automotive and gasket production

Sample cutting on your material provided before order, with full electrical schematic and factory test record included.

Shipping & Delivery

  • Courier delivery

Our courier will deliver to the specified address

2-3 Days

From $20

  • DHL Courier delivery

DHL courier will deliver to the specified address

2-3 Days

From $40

  • Warranty 1 year
  • Free 30-Day returns

Specification

Description

Welded Frame Engineering — High-temperature tempering and CNC-machined surfaces ensure dimensional stability across the RT-D2516/RT-S2516 cutting platform.

Technical Specifications

Parameter Value
Model RT-D2516/RT-S2516
Product Type Multi-Layer CNC Digital Textile Cutter
Working Area 1600×2500 mm
Machine Dimensions (L×W×H) 3450×2300×1250 mm
Rated Power 9 kW
Voltage 380V ±10%
Cutting Speed 200–800 mm/s (varies with material)
Translational Velocity 800–2000 mm/s
Repeatability ≤0.1 mm
Cutting Thickness ≤100 mm (basis not stated in source — confirm material stack height and fabric type)
Tool Head Options Swiss imported 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, projection positioning
Worktable Type Flat working table or auto-feeding conveyor table
Vacuum Platform Magnesium-aluminum alloy with PVDF coating, anodic oxidation; integrated aviation aluminum pump shell with built-in silencer sponge
Vacuum Pump 7.5 kW
Transmission System Digital servo motor (Delta or Panasonic optional), linear guide, synchronous belt, ball screw
Control System Touch screen panel, multiple languages (EN/RU/IT/ZH; custom languages available)
Software Compatibility PLT, DXF, AI, HP-GL
Safety Devices Infrared induction blocking, anti-collision sensors on both sides of beam, emergency stop with in-situ resume
Assembly State Fully assembled (split vacuum box for transport)
Warranty 1 year

Application Suitability

Application Material or Output
Garment and clothing production Woven fabric, knitted textile, non-woven fabric, multi-layer cloth stacks
Footwear and bag manufacturing Leather, PU, EVA, synthetic textile, shoe lining materials
Automotive interior trimming Car seat fabric, headliner material, carpet, floor mat composites
Soft home furnishings Upholstery fabric, curtain textile, cushion foam, sponge
Sports and outdoor gear XPE, PVC, composite panels, technical textile
Packaging and sample making Corrugated cardboard, cardboard, sticker, film
Sealing and gasket fabrication Rubber, PTFE, ETFE, gasket composite sheets
Advertising and printing Vinyl, PP, PE, printed banner, graphic film

Why Specifying a CNC Knife Cutting Machine Manufacturer Without Seeing the Weld Matters

The weld seam tells you more about a factory than any brochure ever will.

Distributors and importers routinely compare CNC knife cutting machine manufacturers on working area and cutting speed, then discover after delivery that the frame deflects under full vacuum load or the gantry loses repeatability within months. High-temperature tempering is not a luxury — it relieves internal stress from welding so the bed stays flat when the 7.5 kW vacuum pump pulls full suction across the 1600×2500 mm table. I have watched buyers accept machines where the platform warped after continuous operation, forcing daily recalibration of the CCD camera. [NEED_CITE: structural stress relief methods in CNC machine frame manufacturing]

RT-D2516/RT-S2516 Multi-Layer CNC Digital Textile Cutter on factory floor

Frame Integrity and Motion Precision at the Core Factory

Every CNC knife cutting machine manufacturer claims rigidity, but few let you inspect the weld preparation before paint. The RT-D2516/RT-S2516 frame uses thick-walled seamless steel tube, welded into a single structure and then sent through high-temperature tempering before the CNC machining center finishes all mounting surfaces. This sequence eliminates residual stress that would otherwise shift the linear guides and ball screws out of alignment during the first year of operation. Delta or Panasonic servo motors drive the gantry along these prepared rails, and the ≤0.1 mm repeatability figure depends entirely on that foundation holding true.

Vacuum Platform Engineering That Holds Small Parts Down

Multi-layer textile cutting generates significant lifting force, especially when the oscillating knife exits a cut at 800 mm/s translational velocity. The magnesium-aluminum alloy platform addresses this with fluorocarbon PVDF powder spraying followed by anodic and hard oxidation — a three-stage surface treatment that maintains flatness under repeated vacuum cycling. The integrated aviation aluminum pump shell houses a silencer sponge that reduces operational noise, which matters when the machine runs adjacent to sewing lines. Small garment pattern pieces are the real test: if vacuum zoning is inadequate, they shift mid-cut and the entire stack is wasted. [NEED_CITE: vacuum holding force requirements for multi-layer textile cutting]

Reading the Specs That Actually Determine Cutting Quality

The cutting speed range of 200–800 mm/s means nothing without knowing which tool head meets which material. The Swiss imported oscillating knife handles woven fabric and technical textiles with clean edge separation, while the pneumatic knife is better suited for thicker foam and sponge stacks. For corrugated cardboard packaging samples, the creasing wheel and drag knife combination scores fold lines without penetrating the flute structure. CCD camera mark point positioning becomes essential when cutting printed fabric — the panoramic camera option tracks registration marks across the full 2500 mm bed length, whereas projection positioning overlays the cut path directly onto the material for manual verification before the knife engages. The touch screen control panel supports multiple languages, which reduces operator error when the machine ships to a non-Chinese-speaking workshop where the nesting software must import DXF and HP-GL files without conversion issues.

Touch screen control panel with multi-language interface and CCD camera positioning display

What Happens When the Wrong Configuration Ships

Selecting a CNC knife cutting machine manufacturer involves more than matching working area to sheet size — choosing the wrong tool head for a specific fabric produces ragged edges on woven cloth or crushes foam layers instead of shearing them cleanly. Inadequate vacuum zoning allows small leather pieces to lift during high-speed contour cuts, ruining the entire hide. When the control language and voltage are not confirmed before production, the machine arrives with a 380V supply that does not match a 220V three-phase workshop, and rewiring on-site voids the electrical warranty. [NEED_CITE: industrial voltage standards for CNC equipment in export markets]

Why Buyers Source This Machine Here

In-house design covers frame geometry, motion system layout, and tool head integration, so a distributor requesting OEM branding receives a machine engineered as a complete system rather than assembled from catalog parts. The core factory controls welding, tempering, machining, and final assembly under one roof, which means the factory test record reflects actual production conditions rather than a brief power-on check. Tool head and vacuum table configurations are specified per material and daily volume, not pulled from a default list. CCD positioning options are tested against the buyer’s printed fabric before commitment, and voltage, language, and control interface customization is confirmed in writing before the frame enters the welding bay.

Documentation & Verification

  • Machine specification sheet listing all selected tool heads and vacuum zone layout
  • Electrical schematic with voltage and frequency confirmed for destination market
  • Factory test record documenting cutting performance on buyer-supplied fabric samples
  • Tool head and table configuration list matched to stated material and thickness
  • Software licence file with format compatibility note for PLT, DXF, AI, HP-GL
  • CE declaration documentation where applicable for target market import

Installation, Commissioning & Support

  • 3450×2300 mm footprint requires level concrete floor with anchor provisions for the split vacuum box
  • Dedicated 380V ±10% three-phase circuit with minimum capacity for combined 9 kW machine and 7.5 kW pump load
  • Fully assembled delivery with split vacuum box reconnection and platform leveling on arrival
  • First-run parameter setting for cutting speed, vacuum pressure, and CCD camera calibration on actual material
  • Touch screen control panel training in selected language covering nesting software and emergency stop in-situ resume
  • Spare parts list including oscillating knife blades, vacuum seals, and servo motor drive belts

Preparing Your Inquiry

Share the exact fabric type, fiber composition, and stack thickness you run daily so the tool head and vacuum zoning can be specified accurately. Confirm your workshop voltage, frequency, and available floor space for the 3450×2300 mm machine plus material staging area. Provide sample files in your preferred format (DXF, AI, PLT, or HP-GL) so software compatibility and nesting workflow are verified before quotation.

Frequently Asked Questions

Q: What does the in-house design team cover on the RT-D2516/RT-S2516?
A: The design team engineers the frame geometry, motion system layout, vacuum platform treatment, and tool head integration as a unified system. This means the welding sequence, tempering cycle, and CNC-machined mounting surfaces are all specified together, ensuring the linear guides and ball screws sit on a stress-free foundation that maintains ≤0.1 mm repeatability throughout the machine service life.

Q: How is build quality controlled during core factory production?
A: Each frame passes through high-temperature tempering after welding, then the CNC machining center finishes all critical surfaces. Assembly inspection checks servo motor alignment, vacuum platform flatness across the full 1600×2500 mm area, and CCD camera positioning accuracy. The factory test record documents cutting results on the buyer’s material before the machine leaves the floor.

Q: What OEM and private-label options are available for distributors?
A: Distributors and importers can request custom branding on the machine frame, control panel interface language, and documentation package. Voltage and plug configuration are matched to the destination market. The tool head selection and vacuum table zoning are configured per the distributor’s target customer base, with sample cutting reports provided on representative materials.

Q: Can I visit the factory for acceptance testing before shipment?
A: Buyers are welcome to witness the factory test on their own material samples. The test verifies cutting speed, edge quality, and CCD contour tracking on the actual fabric or composite specified. Any adjustments to tool head configuration or vacuum zoning are made during this visit, and the final test record is signed off before crating.

Q: What documentation ships with each machine?
A: The package includes a machine specification sheet, electrical schematic with confirmed voltage, factory test record, tool head and table configuration list, operation and maintenance manual in the selected language, software licence with file format compatibility note, and spare parts list. CE declaration is provided where applicable, and packing photographs document the machine condition before dispatch.

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