Anticipation and Correction of Additive Manufacturing Geometric Defects at the Design Stage
 
More details
Hide details
1
Mechnanical Engineering, Higher School of Technology , Sidi Mohammed Ben Abdellah University, Morocco
 
2
Mechanical Engineering, Higher School of Technology ,Sidi Mohammed Ben Abdellah University, Morocco
 
3
Mechanical Engineering, Higher School of Technology , Sidi Mohammed Ben Abdellah University, Morocco
 
4
Mechanical Engineering, Higher School of Technology, Sidi Mohammed Ben Abdellah University, Morocco
 
 
Submission date: 2025-02-19
 
 
Final revision date: 2025-04-28
 
 
Acceptance date: 2025-05-04
 
 
Online publication date: 2025-05-26
 
 
Corresponding author
ANASS EL-QEMARY   

Mechnanical Engineering, Higher School of Technology , Sidi Mohammed Ben Abdellah University, BP 2427, Imouzzer Road, 30000, Fez, Fez, Morocco
 
 
 
KEYWORDS
TOPICS
ABSTRACT
Mastering additive manufacturing processes is crucial to ensure the production of elements with high geometric quality while avoiding discrepancies between the CAD model and the final component after manufacturing. Therefore, focusing on error compensation and deviation correction from the design phase is essential. By adopting this approach, the CAD model will align perfectly with the manufactured product, reducing undesirable deviations and enhancing the overall precision of the manufacturing process.
REFERENCES (20)
1.
NGUYEN C.V., DANG L.C., LE A.H., BUI D.T., 2023, A Study on the Influence of Printing Orientation in Metal Printing Using Material Extrusion Technology on the Mechanical Properties of 17-4 Stainless Steel Products Journal of Machine Engineering, 23/4, 89–100, https://doi.org/10.36897/jme/1....
 
2.
LAVERNE F., SEGONDS F., ANWER N., COQ M.L., 2015, Design for Additive Manufacturing: A State of the Art, Conference: 14th National Colloquium AIP-Priméca.
 
3.
PONCHE R., 2013, Design Methodology for Additive Manufacturing. Application to Powder Projection, PhD thesis, Ecole Centrale de Nantes, https://theses.hal.science/tel....
 
4.
SINDZE K., 2022, Quality Control & Quality Assurance, Metrology and Inspection for Additive Manufacturing, https://3dadept.com/controle-q....
 
5.
NGUYEN T.T., TRAN T.V., DAO S.H., 2024, A study on the Ability to Fabricate Mold Using 3D Printing Technology and Evaluate the Surface Roughness of Products in Investment Casting. Journal of Machine Engineering, 24/3, 106–118. https://doi.org/10.36897/jme/1....
 
6.
ZHU Z., ANWER N., MATHIEU L., 2017, Deviation Modelling and Shape Transformation in Design for Additive Manufacturing, Procedia CIRP, 60, 211–216. https://doi.org/10.1016/j.proc....
 
7.
MOEHRING H.-C., MAUCHER C., BECKER D., STEHLE T., EISSELER R., 2023, The Additive-Subtractive Process Chain - a Review . Journal of Machine Engineering, 23/1):5–35, https://doi.org/10.36897/jme/1....
 
8.
ZHU Z., ANWER N., MATHIEU L., 2019, Geometric deviation modeling with Statistical Shape Analysis in Design for Additive Manufacturing. Procedia CIRP, 84, 496–501, https://doi.org/10.1016/j.proc....
 
9.
JAQUEMOD A., PALALIĆ M., GÜZEL K., MÖHRING H.-C., 2024, In-Process Monitoring of Inhomogeneous Material Characteristics Based on Machine Learning for Future Application in Additive Manufacturing , Journal of Machine Engineering, 24/2, 83–93, https://doi.org/10.36897/jme/1....
 
10.
HACKNEY D.P.M., AINSLEY M.C., HACKNEY P., 2013, Rapid Manufacturing – State of the Art. Analysis and Future Perspectives, Newcastle upon Tyne.
 
11.
PIAGET A., 2016, Quality Control in Additive Manufacturing, PhD thesis, University of Grenoble Alpes.
 
12.
GHAOUI S., et al., 2019, Analysis of Geometrical Variations in Parts Produced by EBM Additive Manufacturing – the Case of Overhanging Volumes, Conference: S-Mart. Les Karellis, 16th Edition, France.
 
13.
CHAHBOUNI M., 2016, Contribution to the Design of Mechanisms: Tolerance Analysis with the Influence of Form Defects, PhD Thesis, Morocco.
 
14.
CÔTÉ R., 2024, Development of a New Material Deposition Approach to Maximize Density and Minimize Dimensional Deviations of Green Parts Manufactured by Material Extrusion, PhD thesis, Blanchette Montréal, 2024.
 
15.
TAPIE L., 2024. Computer-Aided Design and Manufacturing – Application to Biomedical Engineering, France. https://hal.science/hal-029944....
 
16.
LIENEKE T., DENZER V., ADAM G.A.O., ZIMMER D., 2016, Dimensional Tolerances for Additive Manufacturing: Experimental Investigation for Fused Deposition Modeling, Procedia CIRP, 43, 286–291, https://doi.org/10.1016/j.proc....
 
17.
CHAMBERLIN B., 2014, Additive Manufacturing, France.
 
18.
ZHU Z., 2019, Geometric Models with Defects for Additive Manufacturing, PhD thesis, Cachon.
 
19.
GHERIBI H., BOUKEBBAB S., AMARA I., LINARES J.M., 2010, Identification of Measurement Uncertainties in the Verification of Geometric Tolerances, Aix-Marseille University.
 
20.
ZHU Z., 2019, Geometric Models with Defects for Additive Manufacturing, PhD thesis, Université Paris-Saclay (COmUE), https://theses.hal.science/tel....
 
eISSN:2391-8071
ISSN:1895-7595
Journals System - logo
Scroll to top