To overcome this shortcoming, we combined linear optimization, Computer-Aided Design (CAD), numerical shape optimization, and numerical simulation into an algorithm-driven product design process for additively manufactured truss-like structures. With our Ansys SpaceClaim add-in construcTOR, which is capable of obtaining ready-for-machine-interpretation CAD data of truss-like structures out of raw mathematical optimization data, the high performance of (heuristic-based) optimization algorithms implemented in linear programming software is now available to the CAD community.
To overcome this shortcoming, we combined linear optimization, Computer-Aided Design (CAD), numerical shape optimization, and numerical simulation into an algorithm-driven product design process for additively manufactured truss-like structures. With our Ansys SpaceClaim add-in construcTOR, which is capable of obtaining ready-for-machine-interpretation CAD data of truss-like structures out of raw mathematical optimization data, the high performance of (heuristic-based) optimization algorithms implemented in linear programming software is now available to the CAD community.

Algorithm-Driven Truss Topology Optimization for Additive Manufacturing
201
Algorithm-Driven Truss Topology Optimization for Additive Manufacturing
201Paperback(1st ed. 2022)
Product Details
ISBN-13: | 9783658362102 |
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Publisher: | Springer Fachmedien Wiesbaden |
Publication date: | 02/02/2022 |
Edition description: | 1st ed. 2022 |
Pages: | 201 |
Product dimensions: | 5.83(w) x 8.27(h) x (d) |