Key data
  • Any material, up to 20 mm thick (depending on process, tolerance, and material)
  • Positioning precision: 0.0025 mm
  • Cutting precision: ± 0.01 mm (depending on material and thickness)
  • Surface quality: up to N6 (Ra 0.8 μm)
  • Maximum workpiece dimensions: 1000 x 600 mm
  • Web widths down to 0.2 mm
  • Jet / beam diameter: 0.3 (waterjet) / 0.05 (laser)
Contact

management:

Desta GmbH & Co. KG
Annastraße 11
GER -71384 Weinstadt-Beutelsbach

Phone: +49 (0)7151 98222-15
Fax: +49 (0)7151 98222-11

info@desta-microcut.de

delivery address / production:

Oberer Wasen 16
GER -73630 Remshalden-Geradstetten

 

Exhibitions

messe-medtec-2012

13.-15. März 2012
Messe Stuttgart
Halle 6 Stand 6.557

messe-lasys-2012

12.-14. Juni 2012
Messe Stuttgart

messe-stanztec-2012

19.-21. Juni 2012
Congress Centrum Pforzheim (ccp)

Home

     Sharp cuts with water and light

 

wasserscharfSHARP WATER:
Waterjet cutting in an new dimension

 

Microprecision waterjet cutting

  • Maximum precision
  • Fine surface finish
  • Delicate structures
  • No thermal issues (unlike laser cuttings)
  • No starter holes needed (unlike wire EDM)

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Areas of application for microprecision waterjet cutting

Microprecision waterjet cutting, using the newly developed precision waterjet technology called AWJMM® Microwaterjet, and laser fine machining are used in a wide range of industrial areas. Fields of applications include machine building, the electronics and motor vehicle industries, medical technology and watchmaking, chemical and food industries, jewelry.

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Advantages of microprecision waterjet cutting

The main advantages of waterjet cutting at a glance:

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Quality of microprecision waterjet cutting

The world’s only systems with climate-controlled cutting basins are available from us, so you can reproducibly meet the challenges presented by your components. The parts will also be measured and tested for maximum accuracy, using the latest technology.

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lichtexaktPRECISE LIGHT:
Laser fine machining
 
 


 

 Laser fine machining

  • Cost-effective process
  • High precision, with one of the most precise lasers in the world
  • 5-axis laser

New economical potential in precision laser machining, producing fine contours, delicate structures, and precise holes using up to 5 axes.


 

Areas of application for laser fine machining

Laser fine machining is used in a wide range of industrial areas. Fields of applications include machine building, the electronics and motor vehicle industries, medical technology and watchmaking, chemical and food industries, jewelry.

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Advantages of laser fine machining

The modular machine concept, with three to five CNC axes, supports very flexible application in the highly dynamic precision cutting of fine machined components, in both 2D and 3D.

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Quality of laser fine machining

High machine precision, fast positioning speed and dynamics of the X and Y-axes and rotary axes using linear technology are the prominent features of our lasers. The overall machine concept is based on precision: X-Y table using linear motor technology,

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