CNC Turning Milling Stainless Steel High Precision Aluminum Frame Parts OEM CNC Machining Parts
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| Customization: | Available |
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| Application: | Fastener, Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory |
| Standard: | GB, EN, China GB Code, JIS Code, TEMA, ASME |
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Basic Info.
- Model NO.
- WDA-CM-101
- Surface Treatment
- Polishing
- Production Type
- Mass Production
- Machining Method
- CNC Machining
- Material
- Steel, Brass, Alloy, Copper, Aluminum, Iron
- Certification
- RoHS, ISO 9001
- Name
- Aluminum Alloy CNC Machining Parts
- Materials
- Alloy Aluminum/Steel, Copper, Other Metal
- Service
- ODM/OEM
- Micro Machining or Not
- Micro Machining
- Type
- Broaching, Drilling, Etching / Chemical Machining
- Size
- Customer's 3D Drawing
- Drawing Format
- 2D/(Pdf/CAD)3D(Iges/Step)
- Tolerance
- 0.01mm
- Keywords
- Custom CNC Machining Parts
- Transport Package
- Carton Box
- Specification
- Customized
- Origin
- China
- HS Code
- 8401200000
- Production Capacity
- 50000000
Packaging & Delivery
- Package Size
- 20.00cm * 20.00cm * 5.00cm
- Package Gross Weight
- 1.000kg
Product Description
CNC Milling
CNC (Computer Numerical Control) Milling is a machining process that uses computerized controls and rotating cutting tools to remove material from a Materials Part,creating precision-engineered parts and components.It is widely used in industries such as aerospace,automotive,electronics,and medical manufacturing due to its high accuracy and efficiency.
Design & Programming: The process begins with a CAD (Computer-Aided Design) model,which is converted into a CNC program using CAM (Computer-Aided Manufacturing) software.
Material Setup: The Materials Part,usually metal,plastic,or composite material,is securely fixed on the milling machine's table.
Cutting Process: The CNC machine uses rotating cutting tools,such as end mills or drills,to remove material based on the programmed instructions.
Finishing & Inspection: After machining,the part may go through additional finishing processes like de-burring,polishing,or coating. Precision measurements ensure that it meets specifications.
Advantages of Using CNC Machining:
High Precision: CNC machines offer extremely tight tolerances, which is essential for electronic components that need to fit precisely and function reliably.
Repeatability: Once a design is programmed, CNC machines can replicate the process to produce identical parts with consistent quality, ideal for mass production.
Flexibility: CNC machines can work with a variety of materials, making them versatile for different components in the electronics industry.
Complex Geometries: CNC machining allows for the production of intricate and complex shapes that would be difficult or impossible to achieve with traditional manufacturing methods.
Surface Finish: CNC machining can produce smooth finishes, which is important for the aesthetic appearance and functionality of electronic components.
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Surface Finish
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Anodizing, Oxidation, Polishing, Plating, Silk Screen, Laser Engraving, Carbonization or Nitriding treatment, normalizing, Annealing, Quenching, Tempering.
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Material
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Stainless Steel, Aluminum, Brass, Copper, Titanium, etc.
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Quality Control
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All crucial dimensions will be 100% checked.
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Advantage
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High quality with reasonable price and fast delivery without any delay.
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Thread type
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NPT, BSPT, BSP(G),M, GHT, UN, NPSM, NPTF
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Tolerance
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+/- 0.01 mm to +/- 0.005 mm.
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Inspection Equipment
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Quadratic Element, Three-D Measuring Apparatus, Callipers, Altimeter, Guague, etc.
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Drawings Format
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IGS, X_T, STEP, DWG, PDF, PNG, JPG
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3-Axis Machining: Moves along X,Y,and Z axes; suitable for simple parts.
4-Axis Machining: Adds a rotary movement to the cutting tool or Materials Part,allowing more complex shapes.
5-Axis Machining: Enables movement in five directions,ideal for intricate and high-precision components.
Function: The protective outer shell that houses sensitive electronic components.
Material: Aluminum, steel, plastic, or a combination of materials.
Applications: Smartphones, computers, televisions, routers, and other consumer electronics.
Manufacturing: CNC machines are used to cut and mill these enclosures, as they require precise openings for ports, buttons, and screens.
Function: Heat sinks are used to dissipate heat from electronic components such as CPU, GPU, and power supplies.
Material: Primarily aluminum due to its excellent thermal conductivity.
Applications: Computers, servers, gaming consoles, power supplies, and LED lights.
Manufacturing: CNC machines help produce heat sinks with complex geometries to maximize surface area for effective heat dissipation.
Manufacturing: CNC machines are used to create precise pins, sockets, and other small connector parts with fine tolerances.
Function: These parts are used to hold electronic components securely within the device housing.
Material: Metals like steel, aluminum, and sometimes plastics or composites.
Applications: Used in devices like circuit boards, mobile phones, TVs, and medical equipment.
Manufacturing: CNC machines cut and shape mounting brackets, ensuring the proper fit for delicate electronic components.
Function: Buttons, switches, and dials used for user input.
Material: Plastic, metal, or rubber (for tactile feedback).
Applications: Smartphones, remotes, appliances, and gaming controllers.
Manufacturing: CNC machining can be used to precisely manufacture button parts, including drilling for keyholes or engraving for symbols and labels.
Function: Structures that hold the PCB in place within an electronic device and provide support during installation.
Material: Primarily plastics, but some high-performance PCBs may use metal frames for grounding and support.
Applications: Laptops, mobile phones, routers, printers, and other devices.
Manufacturing: CNC machining is used for cutting and shaping the frame, ensuring that the PCB fits securely.
Function: Tiny, intricate components used in highly specialized applications such as microelectronics or wearable devices.
Material: Special alloys, ceramics, and polymers.
Applications: Medical devices (e.g., pacemakers), sensors, and microchips.
Manufacturing: CNC machining is often used for micro-machining parts with extremely tight tolerances, including creating fine holes and slots.
Function: CNC-machined parts are used in connectors that link cables and wires to various devices or components.
Material: Metals like copper, brass, and sometimes gold-plated for superior conductivity.
Applications: Computer peripherals, networking devices, televisions, and industrial automation.
Manufacturing: CNC milling, turning, and drilling are used to produce precise and reliable connectors with multiple pins or ports.
9. Buttons and Knobs for User Interfaces
Function: Parts for tactile control interfaces in consumer electronics.
Material: Plastic, aluminum, or stainless steel.
Applications: Audio equipment, televisions, microwave ovens, and other household appliances.
Manufacturing: CNC machines are used to create ergonomically designed buttons and knobs, sometimes with engraving for labeling.
Function: Protective enclosures for sensitive electronic parts such as circuit boards, sensors, or microchips.
Material: Plastics, aluminum, and other lightweight materials.
Applications: Mobile devices, consumer electronics, drones, and robotics.
Manufacturing: CNC machines are used for precision machining to create accurate slots, cavities, and openings for connectors or heat dissipation.
Function: Parts that handle radio-frequency signals, such as antennas, signal filters, and adapters.
Material: Metals like copper, brass, and sometimes specialized alloys to optimize signal transmission.
Applications: Communication devices, wireless routers, GPS systems, and other wireless-enabled devices.
Manufacturing: CNC machines can produce small, high-precision RF components that need to meet exact tolerances to work effectively.




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