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HomeCAMAdditive ManufacturingOPEN MIND to Present Additive Manufacturing Capability in hyperMILL at AMUGexpo 2025

OPEN MIND to Present Additive Manufacturing Capability in hyperMILL at AMUGexpo 2025

WESSLING, Germany, Jan 30, 2025 – OPEN MIND Technologies, a leading developer of CAD/CAM software solutions worldwide, announced it will be highlighting and demonstrating an ADDITIVE Manufacturing capability option in its hyperMILL CAD/CAM Software Suite to support 3D printing/ additive and hybrid processes at the Additive Manufacturing Users Group (AMUG) Exhibition “AMUGexpo”, Booth #38 located at Hilton Chicago, Chicago IL from March 30 – April 1, 2025. AMUGexpo is open exclusively to AMUG Education and Training Conference attendees. The AMUG conference takes place from March 30 – April 3.

hyperMILL ADDITIVE Manufacturing provides efficient hybrid processing with simultaneous additive and subtractive processing on one machine. As an early adopter of driving forward the implementation of integrated process chains, OPEN MIND has optimized hyperMILL  ADDITIVE Manufacturing technology to boost the efficiency, precision and process reliability of additive and hybrid manufacturing. At AMUGexpo, attendees can see additive part examples that were programmed and optimized with hyperMILL ADDITIVE Manufacturing.

For key additive applications

For highly complex 5-axis simultaneous processing, hyperMILL ADDITIVE Manufacturing enables an array of flexible options for Directed Energy Deposition processes (DED) and Wire Arc Additive Manufacturing (WAAM). Both laser-based powder nozzle machining heads and WAAM can be controlled using hyperMILL ADDITIVE Manufacturing for selective material deposition, as well as conveniently programmed and automatically simulated for collision avoidance. Using Powder Bed Fusion (PBF) and any necessary rework, hyperMILL supports the full potential of additive manufacturing. hyperMILL enables users to perfectly program cladding and milling together. True-to-detail additive and subtractive simulation as well as stock tracking between the individual process steps guarantee the greatest possible reliability. Key additive applications include repair of damaged components, cladding of additional surface skins, or creation of new components from a substrate. This also creates totally new options for combining different materials, such as when high-quality material layers need to be applied to carrier materials.

A VIRTUAL Machining capability for Additive Manufacturing processes is also offered, where machines often have limited axis ranges. Now hyperMILL VIRTUAL Machining Optimizer can be used during NC code generation to simulate additive tool paths to optimize them for the machining.

About OPEN MIND Technologies AG

OPEN MIND Technologies AG develops and sells innovative CAD/CAM solutions that generate optimized NC milling and turning programs for machine tools from digital models.

Manufacturers from a broad range of industries around the globe have decided to go with OPEN MIND products because they enable cost-effective and efficient manufacturing. This leads to models, prototypes, tools, molds, prismatic workpieces, integral components and more, all of impressive quality:

  1. Modeling and prototyping
  2. Tool and mold manufacturing
  3. Production machining
  4. Automotive industry
  5. Aerospace industry
  6. Energy industry
  7. Medical implant manufacturing
  8. Jewelry and watch industry.

OPEN MIND is active in all of the important markets, such as Asia, Europe and North America, with international subsidiaries and a global network of sales partners. OPEN MIND Technologies AG is a man and machine company. For more information, visit http://www.openmind-tech.com.

About Post Author

Nitin Patil
Nitin Patil
Editor and Director of Content, DailyCADCAM.com. Nitin completed his Master's in Mass Communication & Journalism and having 13 years of work experience as an editor, content writer with renowned international technical magazines and media companies. He is associated with CAD,CAM industry since 2008.
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