Space-time topology optimization for additive manufacturing: Concurrent optimization of structural layout and fabrication sequence

Weiming Wang, Dirk Munro, Charlie C.L. Wang, Fred van Keulen, Jun Wu*

*Corresponding author for this work

Research output: Contribution to journalArticleScientificpeer-review

40 Citations (Scopus)
104 Downloads (Pure)

Abstract

The design of optimal structures and the planning of (additive manufacturing) fabrication sequences have been considered typically as two separate tasks that are performed consecutively. In the light of recent advances in robot-assisted (wire-arc) additive manufacturing which enable addition of material along curved surfaces, we present a novel topology optimization formulation which concurrently optimizes the structure and the fabrication sequence. For this, two sets of design variables, i.e., a density field for defining the structural layout, and a time field which determines the fabrication process order, are simultaneously optimized. These two fields allow to generate a sequence of intermediate structures, upon which manufacturing constraints (e.g., fabrication continuity and speed) are imposed. The proposed space-time formulation is general, and is demonstrated on three fabrication settings, considering self-weight of the intermediate structures, process-dependent critical loads, and time-dependent material properties.

Original languageEnglish
Pages (from-to)1-18
Number of pages18
JournalStructural and Multidisciplinary Optimization
Volume61
Issue number1
DOIs
Publication statusPublished - 2019

Keywords

  • Additive manufacturing
  • Manufacturing process planning
  • Space-time optimization
  • Topology optimization

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