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Industrial Double-Spindle CNC Router

Double Spindle CNC Router K45MT-DT for Furniture and Panel Production

Run repeated flat-part work with two 4.5 kW spindle heads on separate Z axes. K45MT-DT is designed for production where two matched parts, mirrored components or one-to-two-tool cycles can keep both heads useful on one 1325 table.

1300 × 2500 × 200 mm2 × 4.5 kW air-cooledSeparate Z axesVacuum + T-slot table

Repeated Part Production

Built for Repeated Furniture, Door and Panel Work

Furniture and Cabinet Components

MDF, plywood, particle board, melamine board and solid wood parts for cabinets, doors, tables, decorative panels and custom furniture components.

Signs and Sheet Materials

Acrylic, PVC, plastics, foam and aluminum composite panel for profile cutting, grooving, engraving, lettering and repeated sheet work.

Batch and Mirrored Parts

The strongest fit is stable repeated work where two parts can be positioned safely and the normal cycle uses one or two main tools.

Two Separate Z Axes

Keep Two Spindles Productive on Repeated Work

The two spindle heads move on separate Z axes. Fit the same cutter in both heads for matched operations on two parts, raise one head when only one cutter is needed, or plan two main tools into the process where the selected control setup supports the sequence.

If one part routinely needs several automatic tool changes, an ATC router is usually the cleaner solution. If dense connector drilling or horizontal holes dominate the work, use a drilling-focused machine instead.

Is K45MT-DT Right for Your Production?

Strong fit

  • Repeated or mirrored cabinet, door and furniture components.
  • Stable batches where two parts can fit within the usable table area.
  • Programs dominated by one or two tools.
  • Cutting, grooving, engraving, pocketing and selected vertical spindle drilling.
  • More parallel capacity on one table without moving directly to a larger multi-head system.

Choose another configuration when

  • Every part is different and the second head would remain idle.
  • One part routinely needs several cutters in one cycle.
  • Dense or horizontal cabinet drilling controls production.
  • Side, angled or sculpted machining requires 4-axis or 5-axis motion.
  • Metal removal exceeds a practical soft-aluminum routing process.

Machine Data

K45MT-DT Technical Specifications

ItemSpecificationWhat It Means for Production
ModelK45MT-DTDouble-spindle 3-axis routing platform.
Working area1300 × 2500 × 200 mmStandard 1325 / 4×8 class sheet capacity.
Machine size2200 × 3100 × 1700 mmUse this footprint when planning installation and service space.
Spindles2 × 4.5 kW air-cooledTwo cutters can stay prepared; matched work can use both heads.
Spindle speed18,000 rpmReference speed for the current configuration.
X/Y transmissionRack-and-pinion gear driveLong-axis motion across the 1325 table.
Z transmissionTaiwan ball-screw driveControlled vertical movement for each spindle assembly.
Linear guideTaiwan 20 mm square linear guideSupports stable guided motion.
Drive motorsStepper motorsCurrent standard drive configuration.
Maximum travel speed35,000 mm/minMachine movement specification.
Maximum cutting speed25,000 mm/minActual cutting settings depend on material, cutter and depth.
TableVacuum table with T-slotVacuum hold-down plus mechanical clamping routes.
Vacuum pump7.5 kWReference pump configuration for sheet holding.
ControllerDSP handheld controllerOffline handheld control for the standard configuration.
Software / commandUcancam / G-codeCAM-generated machine-code process.
Computer interfaceUSB 2.0Program transfer interface.
Inverter5.5 kW InovanceCurrent listed inverter configuration.
Base electrical supplyAC380 V, 50–60 Hz, 3-phaseFinal electrical setup must match the destination factory.

Structure and Workholding

Structure Built for Stable Parallel Routing

K45MT-DT combines rack-and-pinion X/Y motion, ball-screw Z movement, square linear guides and a vacuum T-slot table. Vacuum supports flat sheet work while the T-slots provide another route for clamps or fixtures when vacuum alone is not enough.

The defining feature is the pair of spindle assemblies on separate Z axes. An unused head can move clear of the cutting zone, while matched part layouts can use both heads for planned parallel operations.

For MDF, plywood and other wood-based panels, plan dust extraction together with spoilboard condition, vacuum zoning and sealing.

Choose the Two-Head Setup Around the Real Cycle

Production needSetup directionWhy it matters
Two repeated parts, same operationMatched cutters in both headsKeeps both heads working when spacing and toolpath permit.
One part using two main toolsTwo-head tool setup where control sequence supports itCan reduce some manual cutter-change interruptions.
Frequent multi-tool work on one partATC CNC routerA tool magazine scales better to larger tool counts.
Dense or horizontal furniture drillingDrill bank or six-side drillingTwo vertical spindles do not create multi-face drilling capability.
Higher-volume identical partsReview additional heads and usable table widthExtra heads add value only when part size and batch keep them occupied.

Configuration

Configure Size, Spindle Use and Factory Utilities

Part and head layout

Confirm the largest part, repeated-part spacing, mirrored layouts and whether both heads can stay useful in the normal batch.

Tool and control logic

List the tools used in one cycle. Different-tool or asynchronous behavior must be matched to the selected control setup before order confirmation.

Factory utilities

Confirm voltage, phase, frequency, dust extraction, vacuum requirements, loading space and service access before production starts.

Process Setup

Tooling, Workholding and Sample Cutting

Compression cutters are common starting points for laminated panels, spiral carbide tools for solid wood and O-flute cutters for acrylic and plastics. Final tooling follows the material, edge finish, cutting depth and part geometry.

Vacuum works best on flat sheet material with a prepared spoilboard and controlled open zones. Small parts, porous boards, narrow strips and cut-through profiles may need zoning, gasketing, tabs, onion-skin passes, tape, clamps or a dedicated fixture.

Soft aluminum remains a conditional application. Send the alloy, thickness, depth per pass and finish requirement so tooling, hold-down, chip removal and air-blast or lubrication needs can be reviewed with a representative sample test.

Quality Control

Machine Testing Before Shipment

Every Quick CNC machine is assembled, inspected and tested before shipment. Production control includes component, assembly, electrical, running and packing checks. Quick CNC also uses CMM, laser interferometer and Ballbar methods across its quality system where applicable.

For K45MT-DT, the exact test combination, running duration, sample work and acceptance points follow the final configuration and order requirements. Numerical performance results are published only when a traceable test record supports them.

If CE or destination-specific documents are required, state the destination and document requirement before order confirmation so the applicable scope can be checked.

Double Spindle, ATC or Drilling-Focused CNC?

K45MT-DT

Choose it when one or two tools cover most of the cycle and repeated parts can keep both heads productive.

ATC CNC Router

Choose ATC when one part regularly needs several automatic tool changes and program flexibility matters more than paired-head output.

Drilling-Focused CNC

Choose a drill-bank or six-side drilling machine when dense connector holes, horizontal holes or multi-face drilling dominate the process.

Repeated Door and Panel Work

How Two Heads Fit a Stable Batch

Place two matched door inserts or cabinet components within the usable table area and fit the same cutter in both heads. When the part spacing and toolpath support the layout, the machine can perform the planned operation on both parts during the same machine cycle.

A second tool can remain prepared in the other head for a later operation where the selected control setup supports that sequence. If the product mix changes constantly or each part needs many cutters, the advantage drops and ATC becomes more practical.

The correct decision comes from one representative drawing, the normal tool list and real batch quantity—not spindle count alone.

Quick CNC Manufacturing

Production and Quality Control Around the Final Configuration

Configuration lock

Head spacing, spindle use, table arrangement, controller, electrical setup and supporting equipment are confirmed before production.

Machine build and checks

Frame, components, assembly, electrical functions, running condition and agreed sample work are checked before packing.

Shipment preparation

Export packing, manuals, operating information and service arrangements are coordinated with the final destination.

RFQ Input

Tell Us What You Need to Produce

Part and process

  • Part drawings or clear photos with dimensions.
  • Material type, grade and thickness.
  • Batch quantity and target daily output.
  • Repeated or mirrored part layout.
  • Cutting, grooving, drilling, pocketing and engraving requirements.
  • Number of tools used in a normal cycle.

Software and factory

  • Current CAD/CAM software and file format.
  • Factory voltage, phase and frequency.
  • Dust extraction and existing vacuum equipment.
  • Destination country and port.
  • Sample-test requirements.
  • Required machine documents.

Quick CNC will return the proposed head strategy, workholding direction, required utilities and quotation.

Production Time, Packing and Shipping

Approximately 45 days

Standard production lead time is approximately 45 days after order and configuration confirmation. Custom scope can change the schedule.

Export packing

The machine is prepared for export shipment. Packing method is matched to the machine and shipping plan.

Container shipment

Ocean freight time is separate from production lead time. Incoterm, destination port and unloading details are confirmed with the order.

Installation, Warranty and After-Sales Support

Installation and training

Manuals, operation videos, remote technical guidance and online training are available for machine setup and operation.

One-year warranty

Standard machine warranty is one year from receipt, subject to the final signed agreement and approved exclusions.

Troubleshooting and spare parts

Quick CNC supports troubleshooting and spare-parts coordination. Paid on-site service can be arranged when required.

K45MT-DT FAQ

Can the two spindles work separately?

Yes. The heads use separate Z axes, so one can be raised while the other is used. Different-tool or asynchronous sequences depend on the selected control configuration.

When is simultaneous two-head machining useful?

It is most useful when repeated or mirrored workpieces can be positioned within the usable table area and both heads can follow the planned operation safely.

Should I choose K45MT-DT or ATC?

Choose double spindle when one or two tools cover most of the cycle or when two repeated parts can run in parallel. Choose ATC when one part routinely needs several automatic tool changes.

Can it process acrylic and plastic?

Yes, with suitable tooling, hold-down and cutting parameters matched to material type, thickness and required edge finish.

Can it machine soft aluminum?

Suitable light routing can be evaluated, but alloy, thickness, depth per pass, tooling, chip removal and workholding must be checked. A sample test is recommended.

Does double spindle replace a drill bank?

No. Spindle-mounted tooling can handle selected vertical holes, but dense cabinet drilling, horizontal holes and multi-face drilling require drilling-focused equipment.

Machine Video

See the K45MT-DT in Operation

Use the supplied video to review the double-spindle machine layout and operating context, then compare it with your own part spacing, tool sequence and batch pattern.

Send One Representative Part and Tool Sequence

If both heads can stay productive on your normal work, K45MT-DT can add parallel processing capacity on one 1325 table. Send one drawing, the material, batch size and normal tool sequence so the head layout, table setup and control configuration can be matched to the real cycle.

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