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Custom Jig & Fixture CNC Milling Service for Medical Devices
CNC Milling Parts Specifications
Product Name
CNC Milling Parts
Material Available
Steel
Surface Finish
Blackened
Processing
CNC 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
Packaging & Delivery
Packaging
Bubble and Carton or Customization
Port
Shenzhen
CNC Milling Key Features
CNC milling parts are components produced using CNC milling machines that use rotary cutters to remove material from workpieces, creating complex shapes, slots, holes, and other features with high precision. Suitable for various materials including metals (aluminum, steel, titanium), plastics (POM, ABS, nylon), and composites.
Types of CNC Milling Processes
2D Milling: Basic milling for flat surfaces, slots, and contours in two dimensions. Ideal for parts with simple geometry such as plates, brackets, and frames.
3D Milling: Involves cutting three-dimensional shapes and features into workpieces. Allows production of complex parts with intricate curves, pockets, and cavities.
Multi-axis Milling: Uses machines with more than three axes for highly complex parts with difficult-to-reach areas or intricate shapes such as turbine blades, molds, and medical devices.
Benefits of CNC Milling
High Precision and Accuracy: Creates parts that meet tight tolerances and detailed specifications with consistency and repeatability.
Complex Geometries and Customization: Well-suited for producing parts with intricate geometries and allows high levels of customization.
Versatility Across Materials: Machines wide variety of materials including metals, plastics, and composites.
Efficient Production for High-Volume Runs: Handles both small-batch and high-volume production runs autonomously with minimal supervision.
CNC Milling Applications
Aerospace Industry: Critical components such as turbine blades, wing structures, and engine parts requiring complex geometries and tight tolerances.
Automotive Industry: Engine blocks, transmission parts, suspension components, and other essential components.
Medical Devices: Surgical instruments, implants, and diagnostic equipment requiring high precision.
Electronics: Housings, connectors, and circuit boards requiring precision and repeatability.
Design Support & Engineering Services
Design for Manufacturing (DFM) Analysis
Manufacturability Review: Identification of potential production issues
Cost Reduction Analysis: Alternative approaches, material optimization