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Topology-Optimization with Nozzle-Size-Restrictions for Material-Extrusion-Type Additive Manufacturing (2020-06)

10.1007/s00158-020-02620-5

 Carstensen Josephine
Journal Article - Structural and Multidisciplinary Optimization, Vol. 62, Iss. 5, pp. 2481-2497

Abstract

Topology optimization that is tailored to additive manufacturing constraints and possibilities is an important area of research with direct implications on solution manufacturability. This paper focuses on implementing the nozzle size constraint that is associated with most material extrusion-type additive manufacturing processes, such as fused filament fabrication and concrete 3D printing. The constraint is especially important for manufacturability in situations where the size of used nozzle is large in comparison with the size of the design domain. This paper suggests a new projection-based algorithm that embeds material extrusion-type primitives into the projection methodology used for material distribution approaches to topology optimization. Projection-based algorithms for continuum topology optimization have received considerable attention in recent years due to their ability to improve manufacturability in a flexible and computationally efficient manner. A formulation for single-directional primitives is presented and extended to allow the use of two-directional primitives that can simulate a more realistic nozzle movement. The proposed algorithms are demonstrated on 2D benchmark problems and are shown to satisfy the imposed nozzle size restrictions.

1 References

  1. Vantyghem Gieljan, Corte Wouter, Shakour Emad, Amir Oded (2020-01)
    3D Printing of a Post-Tensioned Concrete Girder Designed by Topology-Optimization

14 Citations

  1. Liao Minmao, Sun Xiao, Chen Zhaohui (2026-01)
    Simultaneous Topology and Path Optimization for 3D Concrete Printing Based on Discrete Frame Structures
  2. Sun Yuhang, Yang Xiaojie, Liu Xiongfei, Ma Guowei et al. (2025-12)
    Coordinated Spray-Based 3D Printing of Reinforced Concrete Structure:
    A Multi-Angle Strategy for Blockage Mitigation
  3. Kim-Tackowiak Hajin, Carstensen Josephine (2025-09)
    Topology Optimization of 3D-Printed Material Architectures:
    Testing Toolpath Consideration in Design
  4. Lin Xing-Tao, Xu Shuhao, Chen Xiangsheng (2025-08)
    Optimization of Building Structures Based on Additive Manufacturing:
    A Review
  5. Yabanigül Meryem, Özer Derya (2024-12)
    Exploring Architectural Units Through Robotic 3D Concrete Printing of Space-Filling Geometries
  6. Chen Zhaohui, Wang Zhenyue, Liao Minmao, Sun Junbo et al. (2024-07)
    Influence of Printing-Pattern on Bearing-Capacity of 3D Printed Concrete Hollow Structures
  7. Jewett Jackson, Carstensen Josephine (2023-09)
    Topology-Optimization for Material-Extrusion-Based Additive Manufacturing-Processes with Weak Bead Bonding
  8. Liu Dawei, Zhang Zhigang, Zhang Xiaoyue, Chen Zhaohui (2023-09)
    3D Printing Concrete Structures:
    State of the Art, Challenges, and Opportunities
  9. Mogra Mihir, Asaf Ofer, Sprecher Aaron, Amir Oded (2023-08)
    Design-Optimization of 3D Printed Concrete Elements Considering Buildability
  10. Yang Wenwei, Wang Li, Ma Guowei, Feng Peng (2023-06)
    An Integrated Method of Topological-Optimization and Path-Design for 3D Concrete Printing
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    Integrated Lightweight Design-Method via Structural Optimization and Path-Planning for Material-Extrusion
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    A Review of Concrete 3D Printed Structural Members
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    Overcoming Fabrication-Constraints in Concrete 3D Printing Using Interlacing Bezier-Curves:
    A Numerical and Experimental Analysis
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    Bézier-Based Biased Random-Key Genetic Algorithm to Address Printability-Constraints in the Topology-Optimization of Concrete Structures

BibTeX
@article{cars.2020.TOwNSRfMETAM,
  author            = "Josephine V. Carstensen",
  title             = "Topology-Optimization with Nozzle-Size-Restrictions for Material-Extrusion-Type Additive Manufacturing",
  doi               = "10.1007/s00158-020-02620-5",
  year              = "2020",
  journal           = "Structural and Multidisciplinary Optimization",
  volume            = "62",
  number            = "5",
  pages             = "2481--2497",
}
Formatted Citation

J. V. Carstensen, “Topology-Optimization with Nozzle-Size-Restrictions for Material-Extrusion-Type Additive Manufacturing”, Structural and Multidisciplinary Optimization, vol. 62, no. 5, pp. 2481–2497, 2020, doi: 10.1007/s00158-020-02620-5.

Carstensen, Josephine V.. “Topology-Optimization with Nozzle-Size-Restrictions for Material-Extrusion-Type Additive Manufacturing”. Structural and Multidisciplinary Optimization 62, no. 5 (2020): 2481–97. https://doi.org/10.1007/s00158-020-02620-5.