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| Indexado |
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| DOI | 10.3390/MA13225087 | ||||
| Año | 2020 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
The present paper evaluates the misalignment and geometry distortion of the standard National Institute of Standards and Technology (NIST) test artifact in Inconel 718 alloy, when several layers with and without supports are employed to manufacture it by the Selective Laser Melting (SLM) process. To this end, a coordinate-measuring machine (CMM) is used to measure the geometrical distortion in each manufacturing configuration, following the same measurement protocol. The results show that the laser path strategy favors a thermal gradient which, consequently, induces geometrical distortions in the part. To prove this hypothesis, a numerical simulation is performed to determine the thermal gradient and the pattern of the residual stresses. It was found that the geometrical distortion certainly depends on the position of the feature position and laser strategy, where thermal cycles and residual thermal stresses had an impact in the end-part geometry, especially if a high strength-to-weight ratio commonly used in aeronautics is present.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Martinez, Silvia | Mujer |
Aeronaut Adv Mfg Ctr CFAA - España
Faculty of Engineering of Bilbao - España Universidad del País Vasco - España |
| 2 | Ortega, Naiara | - |
Aeronaut Adv Mfg Ctr CFAA - España
Faculty of Engineering of Bilbao - España Universidad del País Vasco - España |
| 3 | CELENTANO, DIEGO JAVIER | Hombre |
Pontificia Universidad Católica de Chile - Chile
|
| 4 | Sanchez-Egea, Antonio J. | Hombre |
Univ Politecn Cataluna - España
Universitat Politècnica de Catalunya - España |
| 5 | Ukar, Eneko | Hombre |
Aeronaut Adv Mfg Ctr CFAA - España
Faculty of Engineering of Bilbao - España Universidad del País Vasco - España |
| 6 | Lamikiz, A. | - |
Aeronaut Adv Mfg Ctr CFAA - España
Faculty of Engineering of Bilbao - España Universidad del País Vasco - España |
| Fuente |
|---|
| Pontificia Universidad Católica de Chile |
| Generalitat de Catalunya |
| Consejo Nacional para Investigaciones Científicas y Tecnológicas |
| Fondo Nacional de Desarrollo Científico, Tecnológico y de Innovación Tecnológica |
| Serra Hunter program (Generalitat de Catalunya) |
| Wallonie-Bruxelles International |
| Wallonie-Bruxelles International (WBI) |
| National Council for Scientific and Technological Research CONICYT (FONDECYT) |
| Pontificia Universidad Catolica de Chile (PUC) |
| Aeronautics Advanced Manufacturing Center |
| CFAA |
| Aeronautics Advanced Manufacturing Center (CFAA) in the JANO-Joint action toward digital transformation project framework |
| JANO |
| Agradecimiento |
|---|
| This work is supported by the Serra Hunter program (Generalitat de Catalunya) reference number [UPC-LE-304 (2018)] and by the Aeronautics Advanced Manufacturing Center (CFAA) in the JANO-Joint action toward digital transformation project framework. Diego Celentano acknowledges Pontificia Universidad Catolica de Chile (PUC), Wallonie-Bruxelles International (WBI) and National Council for Scientific and Technological Research CONICYT (FONDECYT Projects No. 3180006 and 1180591) for the financial supports provided for this work. |
| Funding: This work is supported by the Serra Húnter program (Generalitat de Catalunya) reference number [UPC-LE-304 (2018)] and by the Aeronautics Advanced Manufacturing Center (CFAA) in the JANO—Joint action toward digital transformation project framework. Diego Celentano acknowledges Pontificia Universidad Católica de Chile (PUC), Wallonie-Bruxelles International (WBI) and National Council for Scientific and Technological Research CONICYT (FONDECYT Projects No. 3180006 and 1180591) for the financial supports provided for this work. |