Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion
- Autores
- Vaca, Laura Silvia; Quintana, Juan Pablo; Vega, Daniel; Márquez, Adriana Beatriz; Brühl, Sonia Patricia
- Año de publicación
- 2020
- Idioma
- inglés
- Tipo de recurso
- artículo
- Estado
- versión aceptada
- Descripción
- The implementation of a duplex process, which combines plasma nitriding with hard coatings obtained by cathodic arc, on stainless steel substrates has faced adhesion problems that affected the wear and corrosion behavior of the treated surfaces. One variation of the cathodic arc process, which could improve the adhesion, is its combination with plasma ion implantation. This work presents results of the wear and corrosion behavior of duplex TiTiN bilayer coatings obtained by cathodic arc deposition combined with ion implantation (PBII&D) on plasma nitrided AISI 316L stainless steel In order to compare the application of PBII&D in duplex processes against conventional cathodic arc deposition, other two types of samples were obtained; one group of samples was coated using the same experimental device with the substrate at floating potential and the other one with a commercial PVD system. The coatings were characterized by SEM, XRD, and nanoindentation. The adhesion was evaluated by the Scratch Test and Rockwell C indentation. The wear resistance was analyzed by the pin-on-disk test and the corrosion behavior was evaluated by means of anodic polarization tests in NaCl solution, as well as by the Salt pray Fog Test. The PBII&D bilayer coatings showed better adhesion while the commercial PVD TiN coatings presented the smallest wear volume loss, but the delamination inside and around the track evidenced adhesion problems. Corrosion resistance was improved in all coatings benchmarked against nitride substrates, but PBII&D processes offered better protection.
Fil: Vaca, Laura Silvia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.
Fil: Quintana, Juan Pablo. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina.
Fil: Vega, Daniel. Physical Department of Condensed Matter (GIyA, CNEA); Argentina.
Fil: Márquez, Adriana Beatriz. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina.
Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.
Fil: Márquez, Adriana Martín. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.
Peer Reviewed - Fuente
- Materials Today Communications (2020)
- Materia
-
Duplex process
Nitriding
Plasma based ion implantation and deposition
TiN
Wear
Corrosion - Nivel de accesibilidad
- acceso abierto
- Condiciones de uso
- 2020-12-02T20:02:41Z
- Repositorio
.jpg)
- Institución
- Universidad Tecnológica Nacional
- OAI Identificador
- oai:ria.utn.edu.ar:20.500.12272/4623
Ver los metadatos del registro completo
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Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItionVaca, Laura SilviaQuintana, Juan PabloVega, DanielMárquez, Adriana BeatrizBrühl, Sonia PatriciaDuplex processNitridingPlasma based ion implantation and depositionTiNWearCorrosionThe implementation of a duplex process, which combines plasma nitriding with hard coatings obtained by cathodic arc, on stainless steel substrates has faced adhesion problems that affected the wear and corrosion behavior of the treated surfaces. One variation of the cathodic arc process, which could improve the adhesion, is its combination with plasma ion implantation. This work presents results of the wear and corrosion behavior of duplex TiTiN bilayer coatings obtained by cathodic arc deposition combined with ion implantation (PBII&D) on plasma nitrided AISI 316L stainless steel In order to compare the application of PBII&D in duplex processes against conventional cathodic arc deposition, other two types of samples were obtained; one group of samples was coated using the same experimental device with the substrate at floating potential and the other one with a commercial PVD system. The coatings were characterized by SEM, XRD, and nanoindentation. The adhesion was evaluated by the Scratch Test and Rockwell C indentation. The wear resistance was analyzed by the pin-on-disk test and the corrosion behavior was evaluated by means of anodic polarization tests in NaCl solution, as well as by the Salt pray Fog Test. The PBII&D bilayer coatings showed better adhesion while the commercial PVD TiN coatings presented the smallest wear volume loss, but the delamination inside and around the track evidenced adhesion problems. Corrosion resistance was improved in all coatings benchmarked against nitride substrates, but PBII&D processes offered better protection.Fil: Vaca, Laura Silvia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.Fil: Quintana, Juan Pablo. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina.Fil: Vega, Daniel. Physical Department of Condensed Matter (GIyA, CNEA); Argentina.Fil: Márquez, Adriana Beatriz. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina.Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.Fil: Márquez, Adriana Martín. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.Peer Reviewed2020-12-02T20:02:41Z2020-12-02T20:02:41Z2020info:eu-repo/semantics/articleinfo:eu-repo/semantics/acceptedVersionhttp://purl.org/coar/resource_type/c_6501info:ar-repo/semantics/articuloapplication/pdfapplication/pdfMaterials Today Communications (2020)2352-4928http://hdl.handle.net/20.500.12272/4623Materials Today Communications (2020)reponame:Repositorio Institucional Abierto (UTN)instname:Universidad Tecnológica Nacionalengenginfo:eu-repo/semantics/openAccess2020-12-02T20:02:41Zhttp://creativecommons.org/licenses/by-nc-nd/4.0/Attribution-NonCommercial-NoDerivatives 4.0 InternacionalVaca, Laura Silvia ; Quintana, Juan Pablo ; Vega, Daniel ; Márquez, Adriana ; Brühl, Sonia PatriciaNo comercial con fines académicos2026-09-24T12:48:15Zoai:ria.utn.edu.ar:20.500.12272/4623instacron:UTNInstitucionalhttp://ria.utn.edu.ar/Universidad públicaNo correspondehttp://ria.utn.edu.ar/oaigestionria@rec.utn.edu.ar; fsuarez@rec.utn.edu.arArgentinaNo correspondeNo correspondeNo correspondeopendoar:a2026-09-24 12:48:17.282Repositorio Institucional Abierto (UTN) - Universidad Tecnológica Nacionalfalse |
| dc.title.none.fl_str_mv |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| title |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| spellingShingle |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion Vaca, Laura Silvia Duplex process Nitriding Plasma based ion implantation and deposition TiN Wear Corrosion |
| title_short |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| title_full |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| title_fullStr |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| title_full_unstemmed |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| title_sort |
Tribological and corrosion Behavior of Duplex Coated AISI 316L using plasma based ion implantation and deposItion |
| dc.creator.none.fl_str_mv |
Vaca, Laura Silvia Quintana, Juan Pablo Vega, Daniel Márquez, Adriana Beatriz Brühl, Sonia Patricia |
| author |
Vaca, Laura Silvia |
| author_facet |
Vaca, Laura Silvia Quintana, Juan Pablo Vega, Daniel Márquez, Adriana Beatriz Brühl, Sonia Patricia |
| author_role |
author |
| author2 |
Quintana, Juan Pablo Vega, Daniel Márquez, Adriana Beatriz Brühl, Sonia Patricia |
| author2_role |
author author author author |
| dc.subject.none.fl_str_mv |
Duplex process Nitriding Plasma based ion implantation and deposition TiN Wear Corrosion |
| topic |
Duplex process Nitriding Plasma based ion implantation and deposition TiN Wear Corrosion |
| dc.description.none.fl_txt_mv |
The implementation of a duplex process, which combines plasma nitriding with hard coatings obtained by cathodic arc, on stainless steel substrates has faced adhesion problems that affected the wear and corrosion behavior of the treated surfaces. One variation of the cathodic arc process, which could improve the adhesion, is its combination with plasma ion implantation. This work presents results of the wear and corrosion behavior of duplex TiTiN bilayer coatings obtained by cathodic arc deposition combined with ion implantation (PBII&D) on plasma nitrided AISI 316L stainless steel In order to compare the application of PBII&D in duplex processes against conventional cathodic arc deposition, other two types of samples were obtained; one group of samples was coated using the same experimental device with the substrate at floating potential and the other one with a commercial PVD system. The coatings were characterized by SEM, XRD, and nanoindentation. The adhesion was evaluated by the Scratch Test and Rockwell C indentation. The wear resistance was analyzed by the pin-on-disk test and the corrosion behavior was evaluated by means of anodic polarization tests in NaCl solution, as well as by the Salt pray Fog Test. The PBII&D bilayer coatings showed better adhesion while the commercial PVD TiN coatings presented the smallest wear volume loss, but the delamination inside and around the track evidenced adhesion problems. Corrosion resistance was improved in all coatings benchmarked against nitride substrates, but PBII&D processes offered better protection. Fil: Vaca, Laura Silvia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina. Fil: Quintana, Juan Pablo. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil: Vega, Daniel. Physical Department of Condensed Matter (GIyA, CNEA); Argentina. Fil: Márquez, Adriana Beatriz. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina. Fil: Márquez, Adriana Martín. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina. Peer Reviewed |
| description |
The implementation of a duplex process, which combines plasma nitriding with hard coatings obtained by cathodic arc, on stainless steel substrates has faced adhesion problems that affected the wear and corrosion behavior of the treated surfaces. One variation of the cathodic arc process, which could improve the adhesion, is its combination with plasma ion implantation. This work presents results of the wear and corrosion behavior of duplex TiTiN bilayer coatings obtained by cathodic arc deposition combined with ion implantation (PBII&D) on plasma nitrided AISI 316L stainless steel In order to compare the application of PBII&D in duplex processes against conventional cathodic arc deposition, other two types of samples were obtained; one group of samples was coated using the same experimental device with the substrate at floating potential and the other one with a commercial PVD system. The coatings were characterized by SEM, XRD, and nanoindentation. The adhesion was evaluated by the Scratch Test and Rockwell C indentation. The wear resistance was analyzed by the pin-on-disk test and the corrosion behavior was evaluated by means of anodic polarization tests in NaCl solution, as well as by the Salt pray Fog Test. The PBII&D bilayer coatings showed better adhesion while the commercial PVD TiN coatings presented the smallest wear volume loss, but the delamination inside and around the track evidenced adhesion problems. Corrosion resistance was improved in all coatings benchmarked against nitride substrates, but PBII&D processes offered better protection. |
| publishDate |
2020 |
| dc.date.none.fl_str_mv |
2020-12-02T20:02:41Z 2020-12-02T20:02:41Z 2020 |
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info:eu-repo/semantics/article info:eu-repo/semantics/acceptedVersion http://purl.org/coar/resource_type/c_6501 info:ar-repo/semantics/articulo |
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article |
| status_str |
acceptedVersion |
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Materials Today Communications (2020) 2352-4928 http://hdl.handle.net/20.500.12272/4623 |
| identifier_str_mv |
Materials Today Communications (2020) 2352-4928 |
| url |
http://hdl.handle.net/20.500.12272/4623 |
| dc.language.none.fl_str_mv |
eng eng |
| language |
eng |
| dc.rights.none.fl_str_mv |
info:eu-repo/semantics/openAccess 2020-12-02T20:02:41Z http://creativecommons.org/licenses/by-nc-nd/4.0/ Attribution-NonCommercial-NoDerivatives 4.0 Internacional Vaca, Laura Silvia ; Quintana, Juan Pablo ; Vega, Daniel ; Márquez, Adriana ; Brühl, Sonia Patricia No comercial con fines académicos |
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openAccess |
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2020-12-02T20:02:41Z http://creativecommons.org/licenses/by-nc-nd/4.0/ Attribution-NonCommercial-NoDerivatives 4.0 Internacional Vaca, Laura Silvia ; Quintana, Juan Pablo ; Vega, Daniel ; Márquez, Adriana ; Brühl, Sonia Patricia No comercial con fines académicos |
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