Techpilot Basis Member

    W.P. HydroschneideTechnik GmbH & Co. KG

    Techpilot Basis Member
    • Hauptstraße 43
    • 88138 Sigmarszell (Lindau (Bodensee))
    • Germany
    • Phone: Show phone number +49 (08389) 92397-18
    • Fax: Show fax number +49 (08389) 92397-20
    • Web: Website
    • Member since: 2004
    • last seen online: last 360 days
    • Company data:
    • Employees: 10 - 20
    • Year of foundation: 1994
    • Turnover: -
    • Certifications:
    • ISO 9001:2008
    • Location:
    Map Location
Contact & company data

Contact name

Michael Meßmer

  •  

  • Phone: Show phone number +49 (08389) 92397-11
  • Fax: Show fax number +49 (08389) 92397-20
  • E-Mail: contact now

Technologies

Water jet cutting - Water jet cutting

Technology Lotsize Length Width Height Diameter Weight Material Strength

Water jet cutting 2D

1 - 100000 12 mm -
3000 mm
10 mm -
2000 mm
-
-
- 0.1 mm -
150 mm

Water jet cutting 3D

1 - 50000 12 mm -
3000 mm
10 mm -
2000 mm
0.5 mm -
650 mm
-
max. 1500 kg 0.5 mm -
1001 mm

Water jet cutting, tube & section

1 - 50000 12 mm -
3000 mm
10 mm -
2000 mm
1 mm -
650 mm
5 mm -
650 mm
max. 1500 kg 0.5 mm -
1001 mm
further Technologies

Company description

The technical capabilities of the WP hydraulic cutting technology:
• Water jet cutting in 2-D
(Including systems with up to 6000 bar and angle correction)
• Water jet cutting in 3-D
• Prototype
• Custom
• Design and construction of devices
• Preparation and processing of CAD data


What materials we can edit?
• Rubber profiles
• Plastics
• Foam
• foam rubber
• Aluminium
• Steel
• Stainless steel
• Titanium
• Copper
• CFRP
• GRP
• Marble
• Stone
• Acrylic
• Glass
• Special materials
• and much more


What are the advantages of water jet cutting?
• Materials can, in contrast to all other separation methods to a thickness of 100 - 150 mm are processed
• Cost-effective low-volume or prototype production
• Economical separation process (no tool change, simple devices, no clamping devices)
• Low program creation time
• Cold cutting process (no thermal and chemical changes / change in the microstructure of the material, thus no material distortion)
• Multiple operations (suchAs notches, holes, figure and contour) can be cut in one step
• Scratch-free processing of the surface
• No generation of toxic gases or vapors
• no development of dust, chips or smoke
• environmentally friendly separation methods (the use of natural substances such as water and sand)
• high precision
• No part warpage (except where appropriate material residual stress)
• Processing option for (almost) all materials (even wrmeleitende or reflective materials)
• Good cutting ability for composite and fiber-reinforced materials, suchB. sandwich materials such as CFRP or GFRP
• No deformation of the material by pressure in the cutting area (only one cutting pressure of approximately 40 N on the workpiece)
• No violation of the material surface (no hairline cracks in the cutting area)
• Complex shapes are cut with high precision
• clean cut edges without fraying and only with minimal burr
• Filigree cut designs with fine contours and minimum bridge widths are technically feasible
• Low material loss and waste (less kerf and optimizing material utilization)
• Small cutting gap (in clean water 0.06 to 0.3 mm, using abrasive from 0.76 to 1.2 mm)
• Cutting of any possibility, even complex contours and shapes, sharp angles, oblique cut edges and small inner radii
• cutting ability in all directions
• section may use or end at any point of the workpiece


What speaks for the WP Hydroschneide technology
Read more

Materials

  • Steel

    • Structural steel
    • Case hardening/tempering steel
    • Stainless steel (rust-proof V2A)
    • Stainless steel (rust-proof V4A)
    • Free-cutting/mild steel
    • Tool steel
    • Spring steel
    • Cold extruding steel
  • Cast metals

    • Cast steel
    • Cast iron
  • Light metals

    • Aluminium and aluminium alloys
    • Magnesium and magnesium alloys
    • Titanium and titanium alloys
  • Heavy metals

    • Copper-zinc alloys (brass)
    • Copper and copper alloys
    • Zinc and zinc alloys
    • Solder
  • Plastics/synthetic materials

    • Thermoplastics
    • High performance plastic
    • Thermosets
    • Elastomers
    • Silocone (LSR)
    • Natural and vulcanised rubber
    • Glass fibre-reinforced plastic
    • Carbon fibre-reinforced plastic
    • Particle reinforced composite materials
    • Wood-Plastic-Composites (WPC)
    • Natural Fibre Composites (NFC)
  • Advanced Materials

    • Nickel alloy (Inconel, Monel, Hastelloy)
    • Carbide
  • Sintered materials

    • Metal powder for formed parts
    • Metal powder for hard metal
  • Non-metal inorganic materials

    • Ceramics
    • Glass
    • Concrete
    • Cast minerals
    • Graphite
  • Natural materials

    • Wood/timber
    • Rock
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Industries

  • Construction and architectural supplies
  • Lighting industry
  • Mining and tunnel engineering
  • Office machinery and supplies
  • Chemical industry
  • Railway and rail vehicles industry
  • Power generation and transmission industry
  • Precision engineering, mechatronics and optics
  • Hydraulic and pneumatic industry
  • Air conditioning, refrigeration and ventilation industry
  • Boiler, container and tank construction
  • Aerospace and aviation industry
  • Medical technology
  • Measurement and control technique, laboratory equipment
  • Military engineering
  • Furniture industry
  • Paper and printing machinery industry
  • Clean room technology
  • Shipbuilding industry
  • Special purpose machinery manufacturing
  • Telecommunication industry
  • Packaging industry
  • Machine tool manufacturing
  • Building, agricultural and forestry machinery manufacturing
  • Automotive and vehicle construction
  • Automation and control engineering
  • Fittings engineering
  • Apparatus engineering
  • Drive and gear engineering
  • Plant engineering and construction
  • Electrical industry
  • Mechanical engineering
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