CNC machining

This process includes multiple computer-controlled machining operations that remove the required material from the workpiece to create custom-designed components.
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With decades of experience meeting the strict regulations and certification requirements of the automotive, aerospace, and medical device industries, we apply those standards as benchmarks across all products we manufacture.

Custom-made unique component

Swiss turning is ideal for miniature components and is especially effective for producing long, slender parts. This technology enables multiple operations, including milling, turning, threading, cross-drilling, engraving, and other machining processes, to be completed on a single machine. By combining these operations into one setup, we can reduce the need for costly secondary processing, save time, lower costs, and ensure each part is manufactured to precise specifications.

Components made through Swiss turning are widely used in industries such as aerospace, electronics, energy and fuel systems, and medical devices. Common examples include shafts, contact pins, housings, inserts, sockets, implants, and related products.

Divine manufactures parts for a wide range of industries, from highly regulated sectors that demand consistent, high-precision components to applications requiring clear and distinctive product identification.

Fitted for your design and purpose

From small batches of a few hundred pieces to high-volume production in the hundreds of thousands, Swiss turning enables us to produce complex components on a single machine. This capability allows us to meet unique design specifications, even for highly demanding applications.

For 1000 to 1 mill pieces production runs
Components machined up to dia. 20mm
Parts require turned and milled features
Machined with metal and plastic
Straightness / concentricity tolerances
High quality finishes and tight tolerances
Delivers repeatable quality
Knowledge

Advantage of CNC Machining process

Compared with other machining and manufacturing methods, CNC machining provides several key advantages.

Greater Precision and Accuracy

CNC machines can reproduce the same component thousands of times, with each part maintaining the same dimensions as the one before it. In addition, computerized controls allow manufacturers to achieve a higher level of precision than is typically possible with manual machining methods.

Faster Turnaround

CNC machining can also deliver significant time savings. With traditional machining equipment, operators must manually configure and set up the machine for each operation. By contrast, CNC equipment can make the required changes through simple adjustments to the program code. In addition, while operators need rest periods, CNC machines can run consistently for longer periods, helping complete orders in less time.

Better Scalability

CNC machining is well suited for both prototyping and production runs. Since the process relies on a CAD file rather than extensive machine and tooling preparation, prototypes can be produced quickly and accurately. After the part design is approved, it can move directly into full-scale production.

Broader Versatility

CNC machining can support a wide variety of designs using metals, polymers, and other materials. This flexibility makes it suitable for producing many different types of parts and products.
About our

CNC Machining Capabilities

  • Our Equipment
  • Industry Standards
  • Production Lead time
  • Quality Assurance
  • (1) CITIZEN CNC Sliding HEADSTOCK TYPE AUTOMATIC CNC LATHE
    Multi Spindle Swiss. Max. Machining Dia. ∅ 32mm (1¼″). Max Spindle Speed: 8,000 RPM . X,Y,Z,B 7 axes of motion, includes 20 tools as standard including 5 live spindles, back spindle enables front/back simultaneous machining.
  • (5) CITIZEN CNC SWISS-TYPE TURNING CENTER
    Multi Spindle Swiss. Max. Machining Dia. ∅ 20mm (.79″). Max Spindle Speed: 10,000 RPM . 8 axes of motion with 3 cross-machining and cross-milling spindle, with back spindle enables front/back simultaneous machining.
  • (6) CITIZEN CNC SWISS-TYPE TURNING LATHE
    Single Spindle Swiss. Max. Machining Dia. ∅ 16mm (0.63”). Max Spindle Speed: 10,000 RPM . Twin turret, all crossworks: cross-drilling, cross-milling, cross-slotting.
  • (3) CITIZEN CNC SWISS-TYPE TURNING LATHE
    Single Spindle Swiss. Max. Machining Dia. ∅ 12mm (0.5”). Max Spindle Speed: 10,000 RPM. Twin turret, all crossworks: cross-drilling, cross-milling, cross-slotting.

 

We stock a range of alloy & plastics material that are suitable for various part applications and industries.

  • Metals (e.g., stainless steel, carbon steel, aluminum, brass).
  • Exotics Alloys (e.g., Hastelloy and Inconel).
  • Plastics (e.g., PEEK, Delrin and Acetal)
  •  
  • ISO9001 Certification.
  • IATF Company certification

 

 

 

  • Prototype 2-3 weeks (typical)
  • Production is 4-6 weeks (typical)
  • Quoted on job by job basis
  • Rush Services Available

 

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Application of CNC Machining products

Parts and products manufactured through CNC machining are used across many industries, including but not limited to the following:
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Industrial

Final delivery

Transportation & Vehicle

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Related Precision Machining Services

We manufacture and supply custom products and provide surface treatment services based on customer specifications and applicable industry standards.

As an efficient and cost-effective one-stop solution provider, we have the scale, capability, and resources to deliver fully integrated services.
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Swiss Turning

This is an excellent method for producing precision parts, with the ability to machine long, slender, and complex components with exceptional accuracy, efficiency, and throughput.
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Automatic Screw Machining

These lathes are used to produce small to medium-sized round and cylindrical components. The process is highly versatile and reliable, delivering parts with excellent consistency.
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Centerless Grinding

Effective surface grinding methods are used for round and cylindrical parts to achieve improved roundness, ultra-fine OD surface finishes, and extremely tight tolerances. They can also be applied to non-round parts to enhance roundness and surface roughness.
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Secondary Processes

These are secondary processes performed after the initial manufacturing stage, such as Swiss turning, CNC machining production, and other related operations.