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{"title":"ISO9001 Certified CNC Machined Electronics Box and Connector with High Tolerance","imgUrl":"https:\/\/img.chinax.com\/nimg\/93\/66\/f4d0696980dde9bb9f930713ce88-200x200-1\/iso9001_certified_cnc_machined_electronics_box_and_connector_with_high_tolerance_for_customized_design.jpg","attrs":{"Brand Name":"IMission","Model Number":"ODM and OEM","Certification":"ISO9001","Place of Origin":"China"}}
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CNC, Turning, Milling, Auto Lathe, Grinding, Stamping,Available Surface Finishes To ensure part corrosion resistance, aesthetics, and specific functionality, we offer comprehensive post-processing services: Plating: Zinc Plating, Nickel Plating, Chrome Pla
CNC, Turning, Milling, Auto Lathe, Grinding, Stamping,Available Surface Finishes To ensure part corrosion resistance, aesthetics, and specific functionality, we offer comprehensive post-processing services: Plating: Zinc Plating, Nickel Plating, Chrome Pla
Custom Precision CNC Machining Components with White Acetal Material for Electronics Box
Custom Precision CNC Machining Components with White Acetal Material for Electronics Box
Product Name
CNC Machining Parts
Material Available
White Acetal
Processing
CNC
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
Engineer Support
Available for engineering assistance and drawings design
Packaging and Delivery
Packaging
Bubble and Carton or Customization
Port
Shenzhen
CNC Machining Parts Key Features
CNC machining parts are renowned for exceptional dimensional accuracy and tight tolerances, ranging from micro-components to large-scale industrial components. Manufactured via computer-controlled cutting tools, these parts ensure consistent quality across high-volume production runs, and are compatible with a wide array of materials including metals, plastics, and composites, making them ideal for aerospace, automotive, and machinery manufacturing sectors.
Key Benefits of CNC Machining Parts
High Precision and Accuracy
CNC machining allows for incredibly precise manufacturing. The computer-controlled process ensures consistent and repeatable results, with tolerances as tight as a few microns. This makes CNC machining an ideal choice for industries that require exacting standards, such as aerospace, medical, and automotive manufacturing.
Complex Geometries
CNC machines can produce parts with intricate shapes, cavities, and features that would be impossible or very difficult to achieve with traditional manual machining methods. This capability makes CNC machining the preferred choice for producing complex components.
Versatility and Flexibility
CNC machining can handle a wide variety of materials, including metals, plastics, and composites. The ability to work with different materials and create a range of part shapes and sizes makes CNC machining a versatile solution for many industries.
Efficiency and Scalability
Once the design is programmed, CNC machines can run autonomously with minimal human intervention. This leads to faster production times, especially for high-volume runs. CNC machining can handle large production volumes without compromising on quality, making it a cost-effective solution for both small and large-scale manufacturing.
Applications of CNC Machining Parts
CNC machining parts are essential in various industries, including:
Aerospace Industry
Aerospace components require the highest levels of precision. CNC machining is used to produce parts like turbine blades, airframes, and engine components. These parts often have complex geometries and must meet strict tolerances to ensure safety and performance.
Automotive Industry
CNC machining is widely used to manufacture engine components, transmission parts, suspension systems, and precision fittings. The automotive industry relies on CNC machining for producing high-performance parts that require durability and precision.
Medical Devices
In the medical field, CNC machining is used to produce surgical instruments, implants, and diagnostic equipment. These parts require stringent quality control to meet regulatory standards and patient safety requirements.
Electronics
CNC machining is also used to create parts for electronic devices, such as housings, connectors, and heat sinks. The accuracy of CNC machining ensures that electronic components fit perfectly and perform optimally.
Service & Support
Custom Manufacturing Process
Requirement Analysis: Part design review, material selection, production volume assessment
Concept Design: Die layout, strip layout for progressive dies, feasibility study
Detailed Design: 3D modeling, component detailing, interference checking
Manufacturing Planning: CNC programming, electrode design, process sequencing
Spare Parts Inventory: Common wear components kept in stock for quick delivery
Technical Support: 24/7 emergency support for production-critical issues
Performance Optimization: Die modification for increased speed or improved part 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
What is the typical lead time for a custom stamping die?
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.
Do you provide sample parts before full die manufacturing?
Yes, we offer rapid prototyping using CNC machining or 3D printing to validate part design before committing to hard tooling.
How do you ensure die longevity and maintenance?
We design with modular wear components, provide detailed maintenance manuals, and offer training on proper die setup and maintenance procedures.
Can you work with international design standards?
Yes, we're experienced with ISO, DIN, JIS, and ASTM standards, and can accommodate both metric and imperial measurements.
What file formats do you accept for die design?
We accept all major 3D formats including STEP, IGES, Parasolid, and native CAD files from UG, CATIA, SolidWorks, and Pro/E.
Do you offer volume-based pricing for mold components?
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.