Introduction to topology optimization Part 1/4

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Part of Modelling ID4135-16, a course in the master program of Integrated Product Design, at the Faculty of Industrial Design Engineering, TU Delft.
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Missing a few constraints that you’ll improve the AI. Rather than size… consider maximum space constraints.
New input factor: material. Allow the AI to choose the material from the global database.
New input factor: Constraints = temperature, durability, radioactivity, chemical interactivity, etc.
New input factor: cost. Give it a budget for material costs to create material optimization using the above constraints.
New input factor: light/shadow requirements (Eg under a bridge, etc.). Allow reflection and bounce.
New secondary input factor: beauty and/or symmetry. Program phi, symmetry, balance, prior artistic understanding of beauty, and current human sample populations of polls for training. Attempt the primary design both without and with this optional/secondary input factor.

KGTiberius
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Thank you so much for these videos. Could you recommend any introductory books on topological optimization?

LuisSanchez-kxpm
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The top right border of the lego blocks are in tension when the force is applied. So how to they contribute to the stiffness?

joejoe-lbbw
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who else was sad that no Lego got used in this video? would love to see the actual physical proof that the topology worked, and not just a few low resolution diagrams, great job at explaining topology, but very poor job at showing it

singinginthedark
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