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Mission ~5 min · ~62 min remaining

Your mission: define and prove attributes

Choose the idealization, assign type and material, and prove what each element actually receives.

You already know how to create a geometry and find regions without relying on IDs. Now it's time to decide what mathematical behavior each element will have and demonstrate that the stored attributes match your intent.

YOUR MISSION

You will build a solid steel beam with SOLID185, you will separate the operations of defining, activating, and assigning, and you will generate a CSV audit. In the challenge, you will change only the central band to aluminum without remeshing.

Guiding question: How do you know which material an existing element has?

Objectives

By completing M03 you will be able to demonstrate that:

  • You choose between a beam, sheet or solid idealization according to the physical question.
  • Justify SOLID185 without claiming that a 3D model is always more accurate.
  • Distinguish defined tables, active pointers, and stored attributes.
  • You define an isotropic elastic material by EX and PRXY.
  • Explain when a section is needed and when the geometry already contains it.
  • Fix existing attributes with EMODIF.
  • Type and material audits using ESEL, *GET and relationships between counts.

Prerequisites and downloads

  • Have completed M02 or know how to create mid_elems by centroids.
  • Maintain consistent SI units: meters, newtons, and pascals.
  • Understand that M03 ends in /PREP7: we will not apply loads or solve yet.

How to use this lesson

PathDurationCoverage
First win 30–35 min Idealization, defining attributes and meshing with basic audit.
Complete 70–75 min In addition, correction with EMODIF, bi-material challenge and CSV contract.

Recommendation: never rely on the active pointer to demonstrate attributes. Count what was stored in each element.

Session map

  1. Mission: objectives, downloads and idealization prediction.
  2. Mental models define versus enable attributes.
  3. Demonstration: ET, MP, meshing and element audit.
  4. Error hunting: misleading pointers and mixed materials.
  5. Challenge: bimaterial beam with full partition.
  6. Mastery: final test that records demonstrated mastery and recommends M04.