5-Axis CNC Machining Services

Simultaneous 5-axis machining for complex parts in a single setup. Compound angles, deep contours, and multi-face features machined with superior accuracy and surface quality — from 1-piece prototypes to production runs, at competitive China factory pricing.

Free Consultation
3-7 Days
Rapid Delivery
±0.02mm
Tolerance Accuracy
Ra 0.8μm
Surface Finish
1 - 10,000 pcs
Batch Flexibility

Materials

Grade Properties Typical Applications
Aluminum 7075-T6 Tensile Strength: 572 MPa, Density: 2.81 g/cm³, high strength-to-weight ratio, excellent fatigue resistance, dimensionally stable Aerospace structural parts, impellers, drone frames, high-performance automotive components
Aluminum 6061-T6 Tensile Strength: 310 MPa, Density: 2.7 g/cm³, excellent machinability, good corrosion resistance, weldable Housings, brackets, optical mounts, robotics components, fixtures
Titanium Grade 5 (Ti-6Al-4V) Tensile Strength: 950 MPa, Density: 4.43 g/cm³, excellent strength-to-weight ratio, biocompatible, corrosion resistant Medical implants, aerospace fittings, turbine components, racing parts
Stainless Steel 17-4 PH Tensile Strength: 1310 MPa (H900), Density: 7.75 g/cm³, precipitation hardenable, high strength with good corrosion resistance Valve components, surgical instruments, aerospace fixtures, pump shafts
Stainless Steel 316L Tensile Strength: 515 MPa, Density: 7.99 g/cm³, superior corrosion resistance especially to chlorides, marine grade Marine hardware, medical devices, food processing components
Tool Steel (D2 / H13) Hardness up to 60+ HRC after heat treatment, excellent wear resistance, dimensional stability Mold components, forming dies, wear plates, precision tooling
Engineering Plastics (PEEK, POM, PC) Lightweight, chemical resistant, electrical insulation, machinable to tight tolerances Medical instrument housings, insulators, semiconductor fixtures, test sockets

Process Parameters

Parameter Standard Range
Machining Type Simultaneous 5-axis / 4+1 positioning / 3+2 indexed
Dimensional Tolerance (Precision) ±0.01mm to ±0.02mm (critical features)
Dimensional Tolerance (Standard) ±0.02mm to ±0.05mm (general features)
Surface Roughness (As-machined) Ra 0.8μm - 1.6μm (contoured surfaces)
Max Part Size (Trunnion Table) Ø600mm x 400mm height
Max Part Weight 150kg (table load capacity)
Min Feature Size 0.3mm diameter holes, 0.5mm ribs
Angular Accuracy ±0.01° (rotary axis positioning)
Geometric Tolerance Profile, true position, concentricity to 0.02mm
Setups Required Typically 1 (vs. 3-5 for 3-axis on complex parts)

Surface Finishes

As-Machined (Fine)

High-quality machined finish direct from simultaneous 5-axis toolpaths. Ra 0.8μm achievable on contoured surfaces with ball-nose finishing passes. Fewer setups mean fewer witness lines and blend mismatches.

Anodizing (Type II / Type III)

Electrochemical oxide layer for aluminum parts. Type II: 5-25μm, custom colors. Type III (hard coat): 25-150μm for extreme wear resistance. Ideal for aerospace and consumer-facing components.

Passivation

Chemical treatment for stainless steel and titanium removing free iron and enhancing corrosion resistance. Critical for medical and marine applications. No dimensional change.

Polishing (Mirror/Satin)

Mechanical polishing of complex contoured surfaces. Mirror polish: Ra ≤ 0.1μm. Ideal for medical implants, optical housings, and premium consumer products.

Bead Blasting

Uniform matte texture that hides minor witness marks on multi-face parts. Glass bead or aluminum oxide media. Achieves consistent Ra 1.6μm - 3.2μm cosmetic finish.

Electroplating (Nickel/Chrome)

Metallic coating for enhanced wear resistance and appearance. Uniform coverage on complex geometries verified by thickness mapping. Thickness: 5-25 microns.

Design for Manufacturing (DFM)

Tooling & Capacity

Type Lead Time Suitable For
Simultaneous 5-Axis Machining Centers Trunnion table, Ø600mm capacity Impellers, turbine blades, medical implants, aerospace structural parts, complex housings
3+2 Indexed Machining Positioning accuracy ±0.01° Multi-face prismatic parts, manifolds, brackets requiring compound-angle holes
Custom Fixtures & Workholding 1-2 weeks Production runs 100-10,000 pcs, thin-wall parts, repeat orders with quick changeover
5-Axis CMM Verification 0.001mm resolution First article inspection, contoured surface verification against 3D model, PPAP documentation

Quality Assurance

Applications

Why Choose FHY Precision

One-setup accuracy: eliminating re-fixturing removes stacking errors and cuts lead time on complex parts
True simultaneous 5-axis capability — not just 3+2 indexing — for flowing contoured surfaces
Compound angles, undercuts, and deep contours machined without special fixtures
Superior surface quality: continuous toolpaths eliminate blend lines between faces
MOQ 1 piece: prototype complex parts without tooling investment
Integrated with in-house CNC turning, EDM, and surface finishing for complete parts
ISO 9001:2015 certified factory in Jieyang, Guangdong with China factory-direct pricing
Free DFM report within 24 hours: setup strategy, tool access analysis, and cost optimization included

FAQ

1. What is the minimum order quantity (MOQ) for 5-axis CNC machining?
Our 5-axis CNC machining MOQ is just 1 piece. Complex parts often start as single prototypes for design validation before moving to production quantities. Whether you need one impeller or 10,000 production parts, we apply the same machining strategy development and quality verification.
2. What tolerances can you achieve with 5-axis machining?
Our standard 5-axis tolerance is ±0.02mm, with ±0.01mm achievable on critical features. Angular positioning accuracy is ±0.01°. Because the part is machined in a single setup, we eliminate re-fixturing errors — geometric relationships between faces (true position, profile, concentricity) are typically held to 0.02mm, better than multi-setup 3-axis machining can achieve.
3. When should I choose 5-axis instead of 3-axis CNC machining?
Choose 5-axis when: your part has complex 3D contours requiring simultaneous multi-face machining; you need to reduce setups for better accuracy; the part has deep cavities, undercuts, or compound angles that 3-axis tools cannot reach; or you are in aerospace, medical, or high-precision tooling. 3-axis remains more economical for flat parts, simple pockets, and through holes. If unsure, send us your STEP file — our engineers will recommend the most cost-effective approach in the free DFM report.
4. What materials can you machine on 5-axis centers?
Aluminum alloys (6061, 7075, 2024), titanium (Grade 2, Grade 5 Ti-6Al-4V), stainless steel (303, 304, 316L, 17-4 PH), tool steels (D2, H13), brass, copper, and engineering plastics (PEEK, POM, PC). For aerospace and medical applications, we source certified material with full mill traceability. Titanium and superalloys are machined with dedicated tooling and optimized speeds.
5. What is the typical lead time for 5-axis machined parts?
Prototypes: 3-7 working days depending on complexity. Production runs: 7-20 working days depending on quantity and finishing requirements. Custom fixtures for production add 1-2 weeks upfront but reduce per-part cost significantly. Every quote includes a confirmed delivery date, and our free DFM review is completed within 24 hours of receiving CAD files.
6. Do you provide free DFM analysis for 5-axis parts?
Yes. Upload your STEP/IGES file and we return a free DFM report within 24 hours. For 5-axis parts, the report covers setup orientation strategy, tool access analysis (tilt angle limits), thin-wall risk zones, fixture requirements, and cost optimization opportunities. This engineering review frequently identifies changes that cut machining cost 15-30% before any metal is cut.
7. What CAD file formats do you accept?
We accept STEP (.stp/.step), IGES (.igs), Parasolid (.x_t), SolidWorks (.sldprt), STL, DXF, DWG, and PDF drawings. For 5-axis contoured parts, the 3D model is the master definition — STEP files are strongly preferred. 2D drawings alone cannot fully define complex freeform surfaces.
8. What surface finishes are available?
Fine as-machined finish (Ra 0.8μm on contours), anodizing (Type II/III for aluminum), passivation (stainless and titanium), polishing (mirror to Ra ≤ 0.1μm), bead blasting, and electroplating (nickel/chrome). Because 5-axis parts are machined in one setup, cosmetic surfaces have fewer blend lines and finish more uniformly.
9. How is pricing calculated for 5-axis machined parts?
Price = Material cost + Machine time (setup + programming + machining) + Surface finishing + Inspection. 5-axis programming is more involved than 3-axis, but single-setup machining often makes complex parts cheaper overall — fewer fixtures, less handling, lower scrap risk. We provide detailed quotations within 24 hours, and higher quantities amortize programming cost significantly.
10. Can you provide samples before mass production?
Yes. We machine first articles on the same 5-axis machines and verify them by CMM against your 3D model before production release. Prototype quantities of 1-10 pieces are our specialty — many customers validate the design with machined prototypes, then move directly to production with the proven program and setup.
11. Do you have ISO certification?
FHY Precision is ISO 9001:2015 certified. We also maintain full material traceability with mill test reports, dimensional inspection reports, and CMM reports for precision-critical parts. IATF 16949 (automotive) and ISO 13485 (medical) quality protocols can be arranged on request for dedicated programs.
12. How do you ensure quality on complex 5-axis parts?
Our quality process: calibrated 5-axis CMM with contoured surface scanning verified against the 3D model, first-article inspection before production release, in-process checks of critical angles and dimensions, and a full dimensional report with every batch. For production orders, we run capability studies (Cpk ≥ 1.33) on critical dimensions and share statistical data on request.
13. Do you sign NDA before reviewing design files?
Yes, we sign NDA before quotation, not just before production. 5-axis parts are frequently aerospace, medical, or defense-related where IP protection is critical. Your CAD files, specifications, and business information are treated as confidential assets. NDA signing is our standard practice.
14. Do you ship internationally?
Yes, we ship worldwide via DHL, FedEx, UPS, and sea freight. Precision parts are packed with anti-rust protection, foam-lined boxes, and vacuum sealing where required. Every shipment includes packing list, Certificate of Origin, and commercial invoice. Air express to US/Europe typically takes 3-7 days.
15. Can you handle both prototyping and production volumes?
Yes. Prototype phase: 1-100 pieces with rapid turnaround and design feedback. Production phase: custom fixtures, optimized cycle times, and process validation for 100-10,000+ piece runs. The 5-axis program developed for your prototype transfers directly to production, so there is no re-engineering risk when you scale.
16. Can you machine parts that also need turning, EDM, or grinding?
Yes. Our 5-axis machining integrates with in-house CNC turning, wire EDM, sinker EDM, and precision grinding. Complex parts requiring multiple processes are managed under one purchase order with a single quality plan — reducing your supplier management overhead and ensuring dimensional compatibility across operations.

Ready to Start Your 5-Axis Machining Project?

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