On-demand Webinar:

Concept Modeling with Zero CAD & Advanced Morphing Features

In the rapidly evolving world of design, the ability to quickly conceptualize ideas and seamlessly transform them into tangible models is crucial. This webinar explores the innovative field of concept modeling, where traditional CAD limitations are transcended through advanced technologies.
We will delve into the groundbreaking concept of zero CAD, which allows for the creation and manipulation of complex designs without the constraints of traditional software. Using advanced morphing features, we will show how designs can easily adapt to changing requirements and user preferences, enabling designers to iterate quickly and unleash their creativity.
The webinar will cover various topics, including Concept Modelling and advanced morphing techniques such as section-based morphing methodology with which a part or assembly can be morphed by cutting sections and controlling the sections. We will also discuss tools that automate & integrate post operations like Remeshing, Rewelding, and Quality Corrections in the morphing stage itself. There will be a demonstration of the new-gen AI/ML-based morphing technology, which gives users a very intuitive feel in the morphing & concept model creation phase. Users can see the comprehensiveness of the ConceptWorks module spanning several manufacturing processes such as sheet metal, castings, plastics, extrusions, etc. Overall, the webinar will showcase how MeshWorks simplifies model creation for various workflows, significantly saving time through automation.

Topics that will be covered in this webinar:

  • Vehicle Design Space – Scan3D.
  • Iso Surface as a Backdrop and Motor Compartment Member Creation.
  • ConceptWorks Workflow.
  • Cross Section Creation.
  • Member Creation.
  • T-Junction B Pillar Modelling Using ConceptWorks.
  • Clay Morphing Single Component.
  • Clay Morphing Assembly.

How does MeshWorks 24 differ from the current tools available?

Process using other tools Process using 球速体育 MeshWorks
ConceptWorks Limited Efficient
Morphing Limited Efficient

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