
5-Axis CNC Machining Center
A 5-axis CNC machining center for simultaneous multi-axis milling of complex geometries in a single setup. Designed for aerospace, mold-making, medical and automotive component manufacturing, with ±0.005 mm positioning accuracy, HSK-A63 spindle and Siemens/Heidenhain CNC control.
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5-Axis CNC Machining Center for Complex Precision Parts
A 5-axis CNC machining center designed for simultaneous multi-axis milling of complex geometries — turbine blades, impellers, aerospace brackets, precision molds and medical components — in a single setup. By rotating and tilting the workpiece along two additional axes beyond X, Y and Z, the machine eliminates re-clamping errors, reduces cycle time for multi-feature parts, and achieves surface finishes and positional accuracies that 3-axis operations cannot reliably deliver.
For machinery importers, distributors and EPC buyers sourcing machined components or sub-assemblies, a 5-axis capability means fewer operations per part, tighter tolerance stacks, and better consistency across production batches — all critical when your end customers demand traceable, inspection-ready parts with complete documentation.
Technical Specifications
| Parameter | Specification |
|---|---|
| Number of axes | 5 (X, Y, Z, A, C — simultaneous) |
| Travel — X / Y / Z | 1,000 / 600 / 600 mm |
| Rotary axis — A (tilt) | +30° / −120° |
| Rotary axis — C (rotation) | 0° / 360° continuous |
| Spindle speed | 0–24,000 RPM |
| Spindle taper | HSK-A63 |
| Spindle power | 15 kW |
| Rapid traverse (X/Y/Z) | 40 / 40 / 30 m/min |
| Tool magazine capacity | 24 stations (chain-type, optional 40) |
| Positioning accuracy | ±0.005 mm (per VDI/DGQ 3441) |
| Repeatability | ±0.003 mm |
| Maximum workpiece weight | 500 kg (on rotary table) |
| Maximum part size (Ø × H) | Ø500 × 400 mm |
| Controller | Siemens 840D sl / Heidenhain TNC 640 (optional) |
| Coolant system | Through-spindle coolant + flood coolant |
| Machine weight | Approx. 12,000 kg |
Specifications shown are representative of a typical configuration for this class of 5-axis machining center. Exact travel, spindle and table parameters are confirmed per project requirement at quotation stage.
Key Features
- Simultaneous 5-axis machining: A and C axes move simultaneously with linear axes, enabling continuous-path machining of complex 3D contours — impeller blades, turbine vanes, organic surfaces — without re-positioning the workpiece.
- Single-setup precision: Parts requiring multiple features on different faces are completed in one clamping, eliminating re-clamping misalignment and reducing cumulative tolerance error.
- Trunnion table design: Integrated A-axis tilt + C-axis rotary table provides full 5-sided machining access. The trunnion is built for rigidity under heavy cuts, with pre-tensioned bearings and direct-drive torque motors for backlash-free rotation.
- High-rigidity machine base: Heavily ribbed cast iron construction provides thermal stability and vibration damping — essential for maintaining micron-level accuracy during long machining cycles.
- HSK-A63 spindle interface: Dual-contact HSK interface ensures repeatable tool changes with low runout, supporting high-speed finishing passes and fine surface finishes.
- Through-spindle coolant: Delivers coolant directly to the cutting edge at up to 70 bar, critical for deep-pocket machining, chip evacuation in hard materials, and extended tool life in titanium and stainless steel.
- Advanced CNC controller: Siemens 840D sl or Heidenhain TNC 640 with 5-axis transformation, 3D tool radius compensation, and collision avoidance — enabling safe, efficient programming of complex toolpaths.
- Thermal compensation: Real-time spindle and ball-screw temperature monitoring with automatic offset correction maintains dimensional stability across shifts and ambient temperature changes.
Why This Matters for Your Sourcing Decisions
Fewer Setups, Fewer Errors
A 5-axis machine can complete a complex bracket or housing in 1–2 setups versus 5–8 on a 3-axis. Each eliminated setup removes a source of positioning error and reduces handling damage risk.
Shorter Lead Times
Reduced setup count, shorter cycle times from optimized tool orientation, and less queue time between operations — all translate to faster turnaround for batch orders and prototype iterations.
Tighter Tolerance Stacks
Positional accuracy of ±0.005 mm and repeatability of ±0.003 mm hold critical feature relationships — datum-to-datum, bore-to-bore, surface-to-surface — across the full part.
Better Surface Finish
Tilted tool orientation keeps the cutting tool at optimal contact angle, allowing shorter cutting tools with less deflection. Result: smoother surfaces, fewer tool marks, less manual polishing.
Complex Geometry Access
Undercuts, deep pockets, angled holes and freeform surfaces that are impossible or impractical on 3-axis machines become standard operations — no special fixtures or EDM follow-up needed.
Documentation Ready
Every batch ships with first-article inspection report, dimensional checklist, material certificate and packing photo set — structured for distributor and EPC acceptance review.
Typical Applications
- Aerospace & defense:nse: Turbine blades, impellers, structural brackets, fuel system components — tight-tolerance 3D contours in aluminum, titanium and Inconel.
- Precision molds & tooling:ing: Injection mold cores and cavities with deep ribs, shut-off surfaces and textured finishes — reduced bench work and EDM reliance.
- Medical devices: Orthopedic implants, surgical instrument components, titanium housings — biocompatible materials, complex organic geometries, mirror finishes.
- Automotive: Engine components, transmission housings, turbocharger impellers, prototype and low-volume production parts with stringent dimensional control.
- Energy: Compressor blades, valve bodies, pump impellers, and seal components for oil & gas and power generation equipment.ent.
- General precision engineering: Complex fittings, manifolds, gear housings and prototypes requiring multi-face machining in a single setup.
How to Specify Your 5-Axis Machining Requirement
To get an accurate quotation and feasibility assessment, provide the following with your inquiry:
- Part drawings (2D + 3D CAD model — STEP, IGES or native format)
- Material specification (alloy grade, hardness, condition)
- Required tolerances (general and critical features)
- Surface finish requirements (Ra / Rt values)
- Estimated annual quantity and batch size
- Any inspection or documentation requirements (first-article report, material certificate, dimensional checklist)
- Special requirements: anodizing, plating, heat treatment, assembly
Procurement FAQ
What materials can the 5-axis machine handle?
Aluminum alloys, carbon steel, stainless steel, tool steel, titanium, Inconel, brass and copper. Material suitability depends on part geometry, tolerance and surface finish — confirmed at quotation.
What tolerances can you hold on a 5-axis part?
Positional accuracy of ±0.005 mm and repeatability of ±0.003 mm per the machine specification. Actual achievable tolerances depend on part size, material, feature type and clamping method — critical tolerances are reviewed per project.
Do you provide inspection reports?
Yes. Each order can include a first-article inspection (FAI) report, dimensional checklist, material certificate and shipment photo pack — structured for distributor or EPC acceptance review.
What is the minimum order quantity?
MOQ is project-dependent. We support prototype, low-volume and production batches. Contact us with your part drawing and estimated quantity for a specific response.
Can you machine from our existing drawings?
Yes. We work from customer-provided 2D drawings and 3D CAD models. Our engineering team reviews drawings for manufacturability before production release, flagging any potential issues for your confirmation.
What documentation is included with export orders?
Standard export documentation includes packing list, commercial invoice, and material certificates. Additional inspection reports or certificates of conformity are available upon request — please specify requirements at quotation.
Ready to Discuss Your 5-Axis Machining Project?
Send us your part drawings, material specification and estimated quantity. Our engineering team will review feasibility, confirm tolerances and provide a quotation — typically within 2–3 business days.
Request a quotation



