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5-Axis CNC Turning Excellence Manufacturer Complex Curves & Micron-Level Accuracy Control
Description of 5-Axis CNC Turning Excellence Manufacturer Complex Curves & Micron-Level Accuracy Control
5-axis CNC turning technology—a manufacturing process that simultaneously controls five axes (X, Y, Z linear motion + two rotational axes) to machine intricate 3D geometries with micron-level precision (tolerances ≤0.001mm). Unlike traditional 3-axis turning, 5-axis systems enable single-setup machining of complex curves, angles, and undercuts, eliminating the need for multiple repositioning and reducing human error. This capability is critical for industries requiring bespoke, high-precision components, such as aerospace turbine blades, medical prosthetics with organic contours, and automotive transmission parts with compound angles.
Specification of 5-Axis CNC Turning Excellence Manufacturer Complex Curves & Micron-Level Accuracy Control
| CNC Capacity | ||||
| CNC Machining Center | 3 / 4 / 5 axis CNC Machining Centers | 40+ CNC Machines | ||
| CNC Turning | φ0.5 - φ300 * 750 mm | DIN-2768-Fine +/-0.005 mm | ||
| CNC Machining | 1270×508×635 mm(max) | DIN-2768-Fine +/-0.005 mm | ||
| CNC Stamping | 1000 * 1000 mm(max) | DIN-2768-Fine +/-0.005 mm | ||
| Drawing Format | IGS,STP,X_T ,DXF,DWG , Pro/E, PDF | |||
| Inspection Equipments | Measurement Instrument, Projector, CMM, Altimeter, Micrometer, Thread Gages, Calipers, Pin Gauge etc. | |||
| Material Available | ||||
| Stainless Steel | SS201,SS301, SS303, SS304, SS316, SS416, 17-4PH, etc. | |||
| Steel | Mild steel, Carbon Steel, 4140, 4340, Q235, Q345B, 20#, 45# etc. | |||
| Brass | HPb63, HPb62, HPb61, HPb59, H59, H68, H80, H90 etc. | |||
| Copper | C11000,C12000,C12000 C36000 etc. | |||
| Aluminum | AL6061, Al6063, AL6082, AL7075, AL5052, A380 etc. | |||
| Iron | A36, 45#, 1213, 12L14, 1215 etc. | |||
| Plastic | ABS, PC, PE, POM, Delrin, Nylon, Teflon, PP,PEI, Peek etc. | |||
| Surface Finishing | ||||
| Aluminum Parts | Stainless Steel Parts | Steel Parts | Copper /Brass | Plastic Parts |
| Clear Anodized | Polishing | Zinc plating | Polishing | Painting |
| Color Anodized | Passivating | Oxide black | Passivation | Chrome plating |
| Sandblast Anodized | Sandblasting | Nickel plating | Galvanized | polishing |
| Chemical Film | Laser engraving | Chrome plating | Nickel Plating | Sandblast |
| Brushing | Carburized | Chrome plating | Laser engraving | |
| Polishing | Heat treatment | |||
| Chroming | Powder Coated | |||
Quality Control
1. Checking the raw material after they reach our factory------- Incoming quality control ( IQC)
2. Checking the details before the production line operated
3. Have full inspection and routing inspection during mass production---In process quality control(IPQC)
4. Checking the goods after they are finished---- Final quality control(FQC)
5. Checking the goods after they are finished-----Outgoing quality control(OQC)
Application Of 5-Axis CNC Turning Excellence Manufacturer Complex Curves & Micron-Level Accuracy Control
1. Auto Components Hardware Parts Auto Parts
2. Communication Equipment
3. Industrial Equipment
4. Medical EquipmentsMechanical Parts
5. Ship Accessories
6. Electrical Equipment
7. Mechanical Equipment![]()
Our Advantages
Unmatched Geometric Complexity
Enables one-step machining of compound curves, helical profiles, and multi-angled surfaces that are impossible to achieve with 3-axis systems. For example, a 5-axis CNC lathe can machine a turbine blade’s airfoil contour and root interface in a single clamping, avoiding alignment errors from repositioning. This reduces part complexity and enhances structural integrity.
Hyper-Precision with Real-Time Monitoring
Integrates advanced metrology tools (e.g., in-process laser scanning, dynamic tool compensation) to maintain micron-level accuracy across thousands of parts. AI-driven quality checks detect deviations in real time, adjusting parameters to compensate for tool wear or thermal expansion. This ensures consistent dimensional control from prototype to mass production, critical for medical implants or optical components.
Reduced Lead Time & Cost Efficiency
Single-setup machining minimizes non-cutting time (e.g., repositioning, fixture changes), accelerating prototype validation (e.g., 48-hour turnaround for first-article approval) and scaling to volume production. For low-volume runs, 5-axis systems eliminate the need for expensive multi-operation tooling, reducing upfront costs for clients in R&D-intensive sectors like robotics or renewable energy.
Material Versatility & Process Optimization
Supports a wide range of materials—from ultra-hard alloys (e.g., Inconel for aerospace) to delicate plastics (e.g., PEEK for medical devices)—using adaptive cutting strategies. For instance, cryogenic cooling prevents thermal deformation when machining titanium, while specialized toolpaths minimize surface roughness in optical-grade acrylics. This expertise ensures optimal material utilization and part performance, even for exotic or hard-to-machine materials.
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FAQ
Q1: Where can I get product & price information?
A1:Send us inquiry e-mail, we will contact you as we receive your mail.
Q2: How long can I get the sample?
A2:Depends on your specific items, within 3-7 days is required generally.
Q3: What kinds of information you need for quote?
A3:Kindly please provide the product drawing in PDF, and will be better you can provide in STEP or IGS.
Q4: What are the payment terms?
A4: We accept 50% as payment deposit, when the goods is done, we take photos for your check and you then pay the balance.
Q5: Are you a trading company or factory?
A5:We are direct factory with 10 experienced engineers and more than 650 employees as well approximate 2,000 square ft. workshop area.
Q6: What shall we do if we do not have drawings?
A6:Please send your sample to our factory, then we can copy or provide you better solutions. Please send us pictures or drafts with dimensions (Length, Hight, Width), CAD or 3D file will be made for you if placed order.