id |
sigradi2020_878 |
authors |
Rocha, Bruno Massara; Steiner, Ygor Facco; Venancio, Leonardo Valbao; Lauwers, Sara Rodrigues |
year |
2020 |
title |
The 3d printing fabrication of cellular solids structures
and its use in architecture |
source |
SIGraDi 2020 [Proceedings of the 24th Conference of the Iberoamerican Society of Digital Graphics - ISSN: 2318-6968] Online Conference 18 - 20 November 2020, pp. 878-885 |
summary |
This article shows the results of the application of parametric design process in the digital fabrication of cellular solids inspired structures by 3d printing in model scale. Two proposal will be presented. Both are devised according to the idea of creating resistant wireframe cellular structure with zero-waste of printing material. The methodology was based in the application of three steps design science research into two different parametric patterns: diagrid and voronoi. It is shown the analytic description of both processes with 3d printed models. The conclusion is that the diagrid pattern offers better control of the design than the voronoi. |
keywords |
Cellular solids, Metamaterials, 3d printing, Parametric Design, Architecture Design |
series |
SIGraDi |
email |
|
full text |
file.pdf (2,817,907 bytes) |
references |
Content-type: text/plain
|
Abueidda, D. W., Bakir, M., Abu Al-Rub, R. K., Bergström, J. S.,
Sobh, N. A., Jasiuk, I. (2017)
Mechanical properties of 3D printed polymeric cellular materials with triply periodic minimal surface architectures
, Materials & Design, 122, 255- 267
|
|
|
|
Ajdari, A. (2008)
Mechanical Behavior of cellular structures: a finite element study
, (Master Thesis) Department of Mechanical and Industrial Engineering, Northeastern University, Boston, Massachusetts
|
|
|
|
Bhate D. (2019)
Four Questions in Cellular Material Design
, Materials (Basel, Switzerland), 12(7), 1060
|
|
|
|
Gibson, L. J.; Ashby, M. F. (1999)
Cellular Solids: Structure and Properties
, Cambridge, Inglaterra: Cambridge University Press, 532 p
|
|
|
|
Leach N. (2017)
Size Matters – why body architecture is the future of 3d printing
, Architectural Design, 87:6, pp 76-83
|
|
|
|
Moon, K. S. (2011)
Diagrid structures for complex-shaped tall buildings
, Procedia Engineering, 14, 1343-1350
|
|
|
|
Naboni, R.; Kunic, A. (2017)
Design and Additive Manufacturing of Lattice-based Cellular Solids at Building Scale
, SIGRADI, CONGRESO DE LA SOCIEDAD IBERO-AMERICANA DE GRÁFICA DIGITAL, 2017, Concepción, Chile. Conference paper
|
|
|
|
Sachin, J. (2015)
Additive Manufacturing and Stress Analysis of Naturally and Artificially Obtained Cellular Structures
, Thesis (Master of science in mechanical engineering) - University of Texas at Arlington. Arlington, Texas
|
|
|
|
Sakin M. K.; Caner, Y. K. (2017)
3d Printing of Buildings: Construction of the Sustainable Houses of the Future by BIM
, Energy Procedia, 134, 7, 702-711
|
|
|
|
Schaedler, T. A., Carter, W. B. (2016)
Architected Cellular Materials
, Annual Review of Materials Research, 46, 187- 210
|
|
|
|
Subrin, K.; Bressac, T. Garnier, S.; Ambiehl, A.; Paquet, E.;
Furet, B. (2018)
Improvement of the mobile robot location dedicated for habitable house construction by 3D printing
, IFAC-Papers Online, 51, I. 11, 716-721
|
|
|
|
last changed |
2021/07/16 11:53 |
|