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Technical highlights of CNC Punch Laser Combined Machine

Aug 08, 2025

The CNC Punch Laser Combined Machine represents a breakthrough in modern sheet metal processing, integrating the high-speed precision of CNC punching with the flexibility and cutting quality of laser technology. This hybrid solution allows manufacturers to perform punching, forming, and complex laser cutting in a single setup, significantly improving productivity and reducing material handling time. With advanced automation, intelligent control systems, and versatile processing capabilities, it delivers exceptional efficiency, accuracy, and cost-effectiveness for a wide range of industrial applications. In this blog, we will explore the key technical highlights that make this combined machine a game-changer in the sheet metal industry.

 

1. Efficient collaborative processing (seamless switching between stamping and laser)

Automatic switching technology

Through the automatic switching of the turret mold library (such as 16 stations) and the laser cutting head, continuous processing of "punching → cutting → forming" is achieved without the need for secondary clamping.

Time-saving: For instance, when processing the panels of electrical cabinets, after stamping the ventilation holes, the contour is directly laser-cut, which increases efficiency by 30% to 50%.

Composite process path optimization

CAM software (such as TruTops Boost) automatically plans the optimal processing sequence to avoid repetitive positioning errors.

 

2. Ultra-high precision (within ±0.1mm)

Laser compensation for stamping error

Stamping may cause material deformation or burrs, while laser cutting can precisely trim the edges (such as removing stamping burrs).

Dynamic focus control

The laser head is equipped with Z-axis auto-focusing, adapting to materials of different thicknesses (0.5 to 20mm).

High-rigidity machine tool structure

The cast iron bed and linear guide rails are adopted to reduce vibration and ensure the positioning consistency of laser cutting and stamping.

 

3. Multi-functional integration (One machine can complete multiple processes

Stamping function

Supports punching, tapping, embossing, blind forming, etc.

Laser function

Fiber lasers (1 to 6kW) can cut carbon steel, stainless steel, aluminum and copper, and can also perform precise engraving.

Special process expansion

Some models support the integration of bending units, achieving a three-in-one combination of stamping, laser and bending.

 

4. Intelligence and automation

Intelligent material arrangement system

AI algorithms optimize the utilization rate of sheet materials (such as automatically nesting punching and cutting paths to reduce waste).

Internet of Things (IoT) remote monitoring

Real-time monitoring of mold life, laser status, and energy consumption data, predictive maintenance reduces downtime.

Automatic loading and unloading options

Combined with robots or material warehouses, it can achieve 24-hour unmanned production.

 

5. Energy-saving and environmentally friendly design

Hybrid power stamping

Servo motor-driven stamping saves 40% energy compared to traditional hydraulic presses.

Laser sleep mode

It automatically reduces power consumption when in standby mode.

Dust removal system

Integrated pulse dust removal reduces the pollution of laser cutting smoke and dust.

 

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