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Customize High Precision CNC Milling Anodized Aluminum 6061 Metal Parts

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Customize High Precision CNC Milling Anodized Aluminum 6061 Metal Parts

The part in the picture is made of aluminum alloy, its surface treatment is clear anodized, and the process is CNC milling. CNC milling (Computer Numerical Control Milling) is one of the core processing methods in modern precision manufacturing and is widely used to produce various parts with complex geometric shapes. During the milling process, the workpiece is cut by a rotating tool to remove excess material and form the desired shape.

If you have demands, welcome to send me the drawings. Thanks.

  • Material Aluminum 6061-T6
  • Machining Method CNC Milling
  • Surface Treatment Clear Anodized
  • Certificate ISO 9001
  • MOQ 1
  • Payment Terms L/C, D/A, D/P, T/T, Etc.

product detail

 Process

Customize CNC Milling

  Usage

Customize Semiconductor parts,Auto parts, electric car, motorcycle, bicycle parts accessories, custom screws Hospital instrumentation parts precision sheet
metal precision machining

  Type

Broaching, DRILLING, Etching / Chemical Machining, Laser Machining, Milling, Other Machining Services, Rapid Prototyping, Turning,Wire EDM

  Material Capabilities

Aluminum, Brass, Bronze, Copper, Hardened Metals, Precious Metals, Stainless Steel, Steel Alloys

  Surface treatment

Anodizing ,Polishing, general/hard/color oxidation, surface chamfering,

tempering,Brushing, Laser engraving , Zinc/Nickl/Chrome/Titanium Plating etc.

 Tolerance

0.003-0.05mm

  Drawing Format

IGS , STEP ,PRO/E, Auto CAD, Solid Works , UG, CAD / CAM / CAE, PDF, JPG

  Our Service

Customizable OEM&ODM CNC machining,as per customer's requirement

  Equipment

CNC Machining Center,CNC lathe,CNC turning,milling

Steps of CNC milling part processing

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CAD design: CNC milling processing begins in the design stage, where design engineers use CAD (computer-aided design) software to create a three-dimensional part model. The model specifies the size, shape, processing features and tolerance requirements of the part.

CAM programming: After the CAD design is completed, the model will be imported into CAM (computer-aided manufacturing) software for programming. CAM software generates G-code to guide the machine tool for processing by simulating the milling process. During the programming process, it is necessary to set processing parameters such as tool path, feed rate, cutting depth, etc. to ensure efficient and accurate material removal.

Material selection: CNC milling can process a variety of materials, such as metals (aluminum, steel, titanium, etc.), plastics, wood and composite materials. The choice of materials depends on the functional requirements, durability and cost control of the part.

Fixture installation and tool preparation: The workpiece needs to be fixed on the milling machine table with a special fixture to ensure stability during processing. Then, according to the different characteristics of the part, select the appropriate tool, such as face milling cutter, end mill, drill, etc. The choice of tool directly affects the processing quality and efficiency of the part.

CNC milling: At the beginning of the process, the CNC machine controls the tool movement according to a pre-programmed program. The tool moves along the X, Y, and Z axes in a specific trajectory to process the workpiece. CNC milling can complete plane processing, groove processing, hole processing, bevel processing, and complex three-dimensional shape processing.

Quality inspection and control: After the parts are processed, quality inspection must be carried out. Inspection tools include vernier calipers, micrometers, and three-dimensional coordinate measuring machines (CMMs) to ensure that the parts meet the tolerances and accuracy required by the design.

Surface treatment and post-processing: For some parts, after the milling process is completed, surface treatment or subsequent processing is required, such as deburring, heat treatment, surface coating (such as anodizing, electroplating), etc., to ensure the corrosion resistance, hardness or aesthetics of the parts.

Inspection & Machining Workshop

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