Synergism between tribological parameters - ``micro-abrasive concentration level{''}, ``micro-abrasive particle type{''}, and ``liquid type{''} of a micro-abrasive slurry composition on the micro-abrasive wear behaviour of Fe-30Al-6Cr (at.\%) iron aluminide alloy
| Audiencia | Público en general | es_ES |
| Cobertura | México | es_ES |
| Fecha de ingreso | 2026-10-05T16:33:31Z | |
| Fecha de publicación | 2023-01-01 | |
| Resumen | Observing the importance of intermetallic materials in mechanical and metallurgical applications, the present work investigates the micro-abrasive wear behaviour in a model-carbide reinforced iron aluminide system. Fe-30Al-6Cr (at.\%) iron aluminide alloy with carbon additions ``as cast{''} specimen was tested. Micrographs revealed a continuous network of eutectic chromium carbides at the interdendritic regions of the D03 ordered aluminide matrix. AISI 52100 bearing steel sphere of diameter 25.4 mm (1 `') was used for wear tests as counter body. Micro-abrasive slurries were prepared with micro-abrasive particles of black silicon carbide - SiC or alumina - Al2O3, with distilled water or glycerin, in four possible combinations of materials double right arrow ``Al2O3 + H2O distilled{''}, ``Al2O3 + glycerin{''}, ``SiC + H2O distilled{''} and ``SiC + glycerin{''}. Further, keeping the normal force constant and together with different levels of micro-abrasive slurries compositions and sliding distances, a factorial experiment was designed. Result analysis showed that wear volume increased with an increase in microabrasive slurry concentration, independently of the type of micro-abrasive particle and liquid. However, the micro-abrasive slurries prepared with SiC and distilled water provided larger wear volumes than the volumes of wear reported under the micro-abrasive slurries formulated with Al2O3 and glycerin. The reason is attributed to the high hardness of SiC particles resulting in high abrasion, whereas the Al2O3 - glycerin slurry lubrication effect restricted high wear. Wear micrographs revealed a change in worn surface morphology from ``grooving micro-abrasion{''} to ``rolling micro-abrasion{''} due to an increase in sliding distance and micro-abrasive slurry concentration. | es_ES |
| Doi | https://doi.org/10.1016/j.wear.2023.204867 | es_ES |
| URI | https://riuat.uat.edu.mx/handle/123456789/5315 | |
| Idioma | en | es_ES |
| Editorial | ELSEVIER SCIENCE SA | es_ES |
| Relación | Wear | es_ES |
| URL relacionado | https://doi.org/10.1016/j.wear.2023.204867 | es_ES |
| Derechos | Acceso restringido / Suscripción (Metadatos de producción científica) | es_ES |
| Licencia | http://purl.org/coar/access_right/c_16ec | es_ES |
| Fuente | Wear | |
| Palabra clave | Intermetallics | es_ES |
| Palabra clave | Iron aluminide alloy | es_ES |
| Palabra clave | Micro-abrasive wear | es_ES |
| Palabra clave | Grooving abrasion | es_ES |
| Palabra clave | Rolling abrasion | es_ES |
| Palabra clave | Micro-abrasive wear mode transition | es_ES |
| Título | Synergism between tribological parameters - ``micro-abrasive concentration level{''}, ``micro-abrasive particle type{''}, and ``liquid type{''} of a micro-abrasive slurry composition on the micro-abrasive wear behaviour of Fe-30Al-6Cr (at.\%) iron aluminide alloy | es_ES |
| Tipo | Artículo | es_ES |
| Arbitrado | Ha sido Arbitrado | es_ES |
| Autor | Paula, Angel Felipe Magnossa de | |
| Autor | Borges, Doris Feijo Leao | |
| Autor | Silva, Felipe Carneiro da | |
| Autor | Rossino, Luciana Sgarbi | |
| Autor | Manfrinato, Marcos Doriga | |
| Autor | Verma, Vikas | |
| Autor | -Dominguez, Jorge Humberto Luna | |
| Autor | Magnabosco, Rodrigo | |
| Autor | Schon, Claudia Geraldo | |
| Autor | Cozza, Ronaldo Camara | |
| Autor | Paula, Angel Felipe Magnossa de | es_ES |
| Autor | Borges, Doris Feijo Leao | es_ES |
| Autor | Silva, Felipe Carneiro da | es_ES |
| Autor | Rossino, Luciana Sgarbi | es_ES |
| Autor | Manfrinato, Marcos Doriga | es_ES |
| Autor | Verma, Vikas | es_ES |
| Autor | -Dominguez, Jorge Humberto Luna | es_ES |
| Autor | Magnabosco, Rodrigo | es_ES |
| Autor | Schon, Claudia Geraldo | es_ES |
| Autor | Cozza, Ronaldo Camara | es_ES |
| Institución | Universidad Autónoma de Tamaulipas | |
| Institución | Universidad Autónoma de Tamaulipas | es_ES |
| URL relacionada | https://doi.org/10.1016/j.wear.2023.204867 | |
| Tipo de artículo | Indexado | |
| Tipo de artículo | Indexado | es_ES |
| Volumen | 524 | es_ES |
