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Motomotive, LLCThe precision of the products I ordered is very high, I did not expect that this company can control the tolerance to the range I need, and the service is very good and every problem can be solved. -
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ConnecticutThey followed our technical drawings to perfection. No deviations in critical dimensions, and everything matched our CAD files precisely -
Morimotothese are amazing quality. I ordered from three companies from China this company had my order to me immediately very impressed with their diligence and shipping is 10 stars! I'll be making another order right now.
Precision CNC Turn Mill Roller for Conveyor Systems with ±0.002~0.005mm Tolerance, ISO9001 Certified and 100% Inspection
| Place of Origin | China |
|---|---|
| Brand Name | IMission |
| Certification | ISO9001 |
| Model Number | CNC Turning Milling |
| Minimum Order Quantity | I PC |
| Price | 0.1~5USD |
| Packaging Details | Bubble and Carton or Customization |
| Delivery Time | 7~35 working days |
| Payment Terms | L/C,D/A,D/P,T/T,Western Union,MoneyGram |
| Supply Ability | 10000pcs per month |
Product Details
| Material | SS | Weight | 0.1-8kg |
|---|---|---|---|
| Weight | 0.1-8kg | Service | OEM Or ODM |
| Key Word | CNC Turning Milling Parts | Key Word | CNC Turning Milling Parts |
| Shipping Method | Express, Air, Sea, Etc. | Product Process | CNC Turning Milling |
| Quality | 100% Inspection | Quality | 100% Inspection |
| Our Service | 24 Hours Online | Feature | Durable And High Precision |
| Surface Finishing | Anodizing, Plating, Polishing, Etc | Processing | CNC Machining, CNC Milling, CNC Turning,Stamping... |
| Drawing | IGES(igs), STEP(stp), SolidWorks (sodprt), PRT, AutoCad,PDF Or Samples | Highlight | ISO9001 Certified CNC Milling Parts,100% Inspection CNC Machined Parts |
| Highlight | ±0.002~0.005mm Tolerance CNC Turn Mill Roller,ISO9001 Certified CNC Turning Milling Parts,100% Inspection CNC Machined Components |
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Product Description
CNC Turn Mill Roller for Conveyor System
CNC Turning Milling Parts Specifications
| Product Name | CNC Turning Milling Parts |
|---|---|
| Material Available | Stainless Steel (SS) |
| Processing | CNC Turning Milling |
| Tolerance | ±0.002~0.005mm |
| Drawing Accepted | IGES(igs), STEP(stp), SolidWorks (sodprt), PRT, AutoCad, or Samples |
| Inspection | CMM, Projector, Height Gauge, etc. |
| Lead Time | 7~35 working days |
| Quality Assurance | ISO9001:2015, SGS, RoHs |
| Payment Term | MoneyGram, Western Union, T/T, D/P, D/A, L/C |
| Price | According to your drawing or requirements |
Packaging and Delivery
| Packaging | Bubble and Carton or Customization |
|---|---|
| Port | Shenzhen |
CNC Turning-Milling Features
CNC turning-milling parts integrate the dual advantages of turning and milling processes, delivering exceptional precision, dimensional stability and structural complexity. Capable of completing turning, drilling, tapping, milling and other multi-step operations in a single setup, these parts minimize clamping errors and boost production efficiency significantly. They are widely applied in manufacturing high-precision components for automotive, aerospace, precision instrumentation and other industries, perfectly meeting the rigorous performance requirements of sophisticated mechanical systems.
Manufacturing Capabilities & Equipment Specifications
CNC Milling Equipment Portfolio
| Machine Type | Axis Configuration | Table Size (mm) | Positioning Accuracy | Repeatability | Spindle Power/Speed | Unique Capabilities |
|---|---|---|---|---|---|---|
| 3-Axis Vertical | X, Y, Z | 500×400 to 1500×800 | ±0.005mm | ±0.003mm | 7.5-22kW, 8,000-24,000 RPM | Heavy material removal, deep cavities |
| 4-Axis with Rotary | X, Y, Z, A | 400×400 to 800×600 | ±0.008mm | ±0.005mm | 10-15kW, 12,000-20,000 RPM | Continuous indexing, cylindrical features |
| 5-Axis Simultaneous | X, Y, Z, A, B/C | 500×500 to 1200×800 | ±0.01mm | ±0.006mm | 12-30kW, 10,000-30,000 RPM | Complex 3D contours, undercuts, compound angles |
| 5-Axis Gantry | X, Y, Z, A, C | 2000×1000 to 5000×2500 | ±0.015mm | ±0.008mm | 18-40kW, 6,000-15,000 RPM | Large part machining, molds, aerospace structures |
| High-Speed Machining | 3/5-Axis | 400×400 to 800×600 | ±0.005mm | ±0.002mm | 15-25kW, 20,000-60,000 RPM | Aluminum, plastics, graphite, fine details |
Technical Parameters & Tolerances
Standard Machining Tolerances
±0.025mm to ±0.10mm
Precision Machining Capability
±0.005mm (with process control)
Ultra-Precision Machining
±0.002mm (for critical features)
Surface Finish Range
- As-machined: Ra 1.6μm to Ra 3.2μm
- Fine machining: Ra 0.4μm to Ra 1.6μm
- Micro-machining: Ra 0.1μm to Ra 0.4μm (with post-processing)
Geometric Tolerancing
- Flatness/Straightness: 0.01mm per 100mm
- Parallelism/Perpendicularity: 0.015mm per 100mm
- True Position: 0.01mm (with precision tooling)
Maximum Part Dimensions
- Standard 5-axis: 800mm × 600mm × 500mm
- Gantry machines: 5000mm × 2500mm × 1500mm
- Weight capacity: Up to 10,000kg on largest machines
Target Industries & Applications
Aerospace & Defense
- Components: Fasteners, fittings, bushings, spacers, hydraulic parts
- Materials: Titanium, high-strength aluminum, corrosion-resistant steels
- Standards: AS9100, NADCAP (supplemental), MIL specifications
Medical & Dental
- Components: Surgical instruments, implantable components, device housings
- Materials: 316L stainless, titanium, PEEK, cobalt-chrome
- Requirements: Biocompatibility, cleanroom manufacturing, full traceability
Automotive & Motorsports
- Components: Engine parts, transmission components, fuel system parts, fittings
- Materials: Various steels, aluminum, brass, exotic alloys for racing
- Capabilities: High-volume production, lean manufacturing, JIT delivery
Electronics & Semiconductor
- Components: Connector pins, shielding components, heat sinks, spacers
- Materials: Copper alloys, aluminum, conductive plastics
- Precision Requirements: Often ±0.005mm or tighter, micron-level finishes
Fluid Power & Hydraulics
- Components: Valve bodies, fittings, manifolds, pistons, cylinders
- Materials: Carbon steel, stainless, brass, aluminum
- Critical Aspects: Pressure integrity, sealing surfaces, thread quality
Technical Advantages
Engineering Expertise
- Design for Manufacturing (DFM): Optimization for reduced cycle time, improved part ejection, extended die life
- Standardization: Modular designs using standard components to reduce cost and lead time
- Innovative Solutions: Experience with multi-material molds, in-mold assembly, and hybrid processes
Manufacturing Excellence
- Advanced Equipment: State-of-the-art CNC, EDM, and grinding equipment with climate control
- Skilled Craftsmen: Toolmakers with 10-25 years experience in precision die making
- Process Control: Statistical process control throughout manufacturing
- Cleanroom Assembly: Critical assembly in controlled environments for contamination-sensitive applications
Frequently Asked Questions
Q: What is the typical lead time for a custom stamping die?
A: Lead times vary from 4-12 weeks depending on complexity. Progressive dies average 6-8 weeks, while simpler compound dies can be completed in 4-5 weeks.
Q: Do you provide sample parts before full die manufacturing?
A: Yes, we offer rapid prototyping using CNC machining or 3D printing to validate part design before committing to hard tooling.
Q: How do you ensure die longevity and maintenance?
A: We design with modular wear components, provide detailed maintenance manuals, and offer training on proper die setup and maintenance procedures.
Q: Can you work with international design standards?
A: Yes, we're experienced with ISO, DIN, JIS, and ASTM standards, and can accommodate both metric and imperial measurements.
Q: What file formats do you accept for die design?
A: We accept all major 3D formats including STEP, IGES, Parasolid, and native CAD files from UG, CATIA, SolidWorks, and Pro/E.
Q: Do you offer volume-based pricing for mold components?
A: Yes, we provide tiered pricing for standardized components ordered in quantity, with discounts available for annual supply agreements.
Contact Information
For custom die and mold component quotations, please provide:
- Part drawings or 3D models
- Annual production volume requirements
- Material specifications
- Existing tooling samples (if applicable)
- Press specifications (for stamping dies)
Engineering Response: Preliminary technical assessment within 48 hours of receiving complete specifications.
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