Milling Machine: Versatile Machining for Complex Structures

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Milling Machine

A device that machines workpieces by rotating cutting tools to form flat surfaces, grooves, curves, etc. CNC milling machines with computer control and G-code programming enable 3-axis or multi-axis 联动 machining, suitable for mass production and high-precision parts (e.g., mold cavities, gearbox casings). They have wide spindle speed ranges (e.g., 0EP25 model up to 5050rpm) and are compatible with ER collets and milling chucks.
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Advantages of the product

High-Speed Spindle Technology

Spindle speeds range from 500rpm to 40,000rpm (e.g., 0EP25 model at 5050rpm), combined with rapid traverse rates (30m/min), reducing cycle times by 40% in aluminum and plastic machining.

Related products

Additional tools such as workholding devices, increase the functionality of slicing systems. The end mills, collets and angle heads are indeed workholding devices. Small tools can be clamped in with an accuracy of +/ -0.01mm using ER collets (Elastic Rollers) and multi directional machining is enabled with hydraulic angle heads. Magnetic vices together with Tb slot clamps guarantee the secure holding of workpieces while coolant systems(5-20 MPA) enhance the tool endurance during highspeed operations.

Frequently Asked Questions

What industries use milling machines?

They are used in aerospace for turbine components, automotive for engine blocks, and medical devices for implant fabrication, supporting both prototyping and large-scale production.

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Customer Reviews

Kyler

CNC milling machines automated gearbox casing production via G-code, cutting cycle time to 45 minutes with ±0.005mm precision. Compatibility with diverse tool holders streamlined our high-mix production.

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CNC Automation and Programming

CNC Automation and Programming

Equipped with G-code programming and CAD/CAM integration, enabling automated tool path generation. Reduces manual programming errors by 70% and supports batch production of complex parts with minimal operator intervention.
Thermal Displacement Compensation

Thermal Displacement Compensation

Advanced models feature temperature sensors and thermal expansion compensation (coefficient ≤1.2×10⁻⁵/°C), maintaining accuracy over long runs. Critical for high-precision industries like semiconductor equipment manufacturing.
Versatile Application Scenarios

Versatile Application Scenarios

Used in aerospace for turbine component machining, automotive for engine blocks, and medical devices for implant fabrication. Supports both small-batch prototyping and large-scale production with equal precision.