Multi-Material Additive Manufacturing technologies enable the fabrication of objects consisting of multiple materials. Among them, Material Jetting allows the designer to control the spatial distribution of the selected materials down to the size of microns, making it suitable for Functionally Graded Materials. Despite this great capability, governing the design complexity unleashed by this class of material is still limited to the current computer-aided tools. The paper aims at investigating how a traditional Boundary representation (B-rep) in the CAD domain, which has been conceived for homogeneous materials, can be adapted to integrate heterogeneous object specifications. A workflow to produce heterogeneous objects, with a focus on Functionally Graded Material Objects, is outlined, from the design of the object geometry with a CAD system to the generation of the machine instructions. The procedure to specify the desired material distribution and to generate the voxels has been embedded in a traditional CAD software, allowing the users to define the specifications of the heterogeneous object interacting with the B-rep entities. Once the material distribution has been defined, a solid voxelization is performed on the geometry and the material composition for each voxel is computed. Finally, the object is sliced and a set of images is generated, informing the printer which material should be deposited at the specific position. A case study to check the feasibility of the proposed workflow has been performed: different specimens varying the voxel size and the deposition pattern have been printed.

(2023). Embedded Workflow for Functionally Graded Material Fabrication with Multi-material Additive Manufacturing . Retrieved from https://hdl.handle.net/10446/272791

Embedded Workflow for Functionally Graded Material Fabrication with Multi-material Additive Manufacturing

Pigazzi, Riccardo;
2023-01-01

Abstract

Multi-Material Additive Manufacturing technologies enable the fabrication of objects consisting of multiple materials. Among them, Material Jetting allows the designer to control the spatial distribution of the selected materials down to the size of microns, making it suitable for Functionally Graded Materials. Despite this great capability, governing the design complexity unleashed by this class of material is still limited to the current computer-aided tools. The paper aims at investigating how a traditional Boundary representation (B-rep) in the CAD domain, which has been conceived for homogeneous materials, can be adapted to integrate heterogeneous object specifications. A workflow to produce heterogeneous objects, with a focus on Functionally Graded Material Objects, is outlined, from the design of the object geometry with a CAD system to the generation of the machine instructions. The procedure to specify the desired material distribution and to generate the voxels has been embedded in a traditional CAD software, allowing the users to define the specifications of the heterogeneous object interacting with the B-rep entities. Once the material distribution has been defined, a solid voxelization is performed on the geometry and the material composition for each voxel is computed. Finally, the object is sliced and a set of images is generated, informing the printer which material should be deposited at the specific position. A case study to check the feasibility of the proposed workflow has been performed: different specimens varying the voxel size and the deposition pattern have been printed.
22-set-2022
2023
Inglese
Advances on Mechanics, Design Engineering and Manufacturing IV. Proceedings of the International Joint Conference on Mechanics, Design Engineering & Advanced Manufacturing, JCM 2022, June 1-3, 2022, Ischia, Italy
Gerbino, Salvatore; Lanzotti, Antonio; Martorelli, Massimo; Mirálbes Buil, Ramon; Rizzi, Caterina; Roucoules, Lionel;
9783031159275
1055
1066
online
Switzerland
Cham
Springer
esperti anonimi
JCM 2022: International Joint Conference on Mechanics, Design Engineering and Advanced Manufacturing, Ischia, Italy, 1-3 June 2022
11th
Ischia, Italy
1-3 June 2022
ADM (Associazione Nazionale Disegno e Metodi dell'Ingegneria Industriale), INGEGRAF (Asociación Española de Ingeniería Gráfica), S.mart (Systems, Manufacturing, Academics, Resources, Technologies)
internazionale
contributo
Settore ING-IND/15 - Disegno e Metodi dell'Ingegneria Industriale
Additive manufacturing; Voxel printing; Heterogeneous objects;
info:eu-repo/semantics/conferenceObject
3
Pigazzi, Riccardo; Rossoni, Marco; Colombo, Giorgio
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
reserved
Non definito
273
(2023). Embedded Workflow for Functionally Graded Material Fabrication with Multi-material Additive Manufacturing . Retrieved from https://hdl.handle.net/10446/272791
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