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Power Skiving

Power Skiving

The DKCK‑VMC450 is a high‑precision 6‑axis, 5‑axis‑simultaneous gear machining center developed by DASK CNC for complex gear components and high‑accuracy transmission parts. Designed in line with the DASK philosophy of integrated, rigid, and highly efficient machining, the DKCK‑VMC450 enables complete gear cutting and skiving operations in a single setup.
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Description

Technical Parameters

Product Introduction

 

 

The DKCK‑VMC450 is a high‑precision 6‑axis, 5‑axis‑simultaneous gear machining center developed by DASK CNC for complex gear components and high‑accuracy transmission parts. Designed in line with the DASK philosophy of integrated, rigid, and highly efficient machining, the DKCK‑VMC450 enables complete gear cutting and skiving operations in a single setup.

product-1000-667

Machine Concept

Equipped with multiple rotary and linear axes, the DKCK‑VMC450 combines X, Y, Z linear axes with SP1, B, and C rotary axes to achieve true 6‑axis coordinated motion. The machine integrates a swiveling milling head, rotary table, and workpiece spindle, allowing complex surfaces, internal structures, and gear profiles to be machined efficiently.

product-1000-1500
 
 

High‑Precision 6‑Axis Machining

The advanced kinematic design enables simultaneous multi‑axis interpolation, significantly reducing the number of clamping operations. This not only shortens cycle time, but also improves dimensional accuracy, surface quality, and positional consistency between machining features.

 
 
 

Rigid Structure for Gear Skiving

The machine base and column are engineered with a high‑rigidity cast‑iron structure, optimized for both static and dynamic stiffness. This robust mechanical design ensures excellent vibration damping and thermal stability, even under demanding cutting conditions.

 
 
 

 

Thanks to its exceptional rigidity and stable axis configuration, the DKCK‑VMC450 easily handles gear skiving operations, delivering high tooth profile accuracy and consistent machining quality for automotive, transmission, and industrial gear applications.

 

 

Key Benefits

 

 

1

6‑axis, 5‑axis‑simultaneous machining for complex gear components

2

Integrated swiveling head, rotary table, and workpiece spindle

3

Reduced setups for higher accuracy and productivity

4

High‑rigidity bed and column for stable gear skiving

5

Ideal for high‑precision, high‑efficiency gear manufacturing

 

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