Aplicação de cavacos de titânio para produção de revestimentos resistentes ao desgaste

Equipments of the sugar-cane plants and mineral extraction are submitted to severe abrasive wear conditions. Welded hardfacing are usually applied to repair that kind of damage where commercial chromium/carbon-rich welding consumables have usually been employed. In the present work was investigated...

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Detalles Bibliográficos
Autores: Fagundes Júnior, José Gedael [UNESP], Manera, Rodolfo Da Silva, Tokimatsu, Ruís Camargo [UNESP], Ventrella, Vicente Afonso [UNESP], Gallego, Juno [UNESP]
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2014
País:Brasil
Institución:Universidade Estadual Paulista (UNESP)
Repositorio:Repositório Institucional da UNESP
Idioma:portugués
OAI Identifier:oai:repositorio.unesp.br:11449/114298
Acceso en línea:http://dx.doi.org/10.1590/0104-9224/SI1903.09
http://hdl.handle.net/11449/114298
Access Level:acceso abierto
Palabra clave:soldagem GTAW
revestimento duro
carbonetos
reciclagem de titânio
microestrutura
resistência ao desgaste
GTAW/TIG welding
hardfacing
carbides
titanium chips recycling
microstructure
wear resistance
Descripción
Sumario:Equipments of the sugar-cane plants and mineral extraction are submitted to severe abrasive wear conditions. Welded hardfacing are usually applied to repair that kind of damage where commercial chromium/carbon-rich welding consumables have usually been employed. In the present work was investigated the microstructure of experimental hardfacings made by addition of residues (chips) collected from machining of ASTM F67 (unalloyed Ti, grade 4) alloy. Mixtures with different carbide-formers (Cr/Nb ferro-alloys) were also tested. Two layers of pure chips (Ti), chips plus Fe-Cr (Ti-Cr), and chips plus Fe-Nb (Ti-Nb) were applied on low-carbon steel specimens by GTAW/TIG process. The microstructure of hardfacing layers was observed by optical and scanning electron microscopy (SEM) equipped with EDS microanalysis. The microstructural characterization has determined that carbide distributions change significantly with the chemical nature of the hardfacing. SEM observations coupled with EDS microanalysis have confirmed the formation of complex carbides within metal weld, whose stoichiometry was determined by X-rays diffraction (XRD) analysis. Mixed carbides MC-type and some cementite have been found. As a result it was suggested that using of ASTM F67 chips as carbide formers for composition of welding consumables can contribute to improve wear resistance of hardfacings, if compared with traditional chromium-based hardfacings.