Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques
- Autores
- Manova, Darina; Mändl, Stephan; Brühl, Sonia Patricia; Escalada, Lisandro; Simison, Silvia
- Año de publicación
- 2014
- Idioma
- inglés
- Tipo de recurso
- documento de conferencia
- Estado
- versión aceptada
- Descripción
- Plasma assisted surface modification methods have been used to nitride stainless steels in order to enhance hardness and therefore the lifetime of industrial componentes. Nevertheless, the corrosion resistance is not always preserved since it thermochemical diffusion techniques. AISI 316L stainless steel was plsma nitrided using three different techniques: Low Energy Ion Implantation (LEII), Plasma Immersion Implantation (PI3) and conventional DC pulsed plasma nitriding (DCPN). For each method several parameters were tested and some of them were selected to achieve the so called S phase of about e um thickness and no nitrides precipitation. The nitrided layer was characterized with OM and SEM. Hardness was assessed on the surface with Vickers indenter and 25 g load. XRD was performed to characterize the S phase and to detect other phases if present and electrochemical corrosion tests were carried out in 3,5% NaCI solution. Although the S phase thickness in the three groups of samples was comparable, hardness was not and neither was the corrosion resistance. The PI3 samples were the hardest with the best performance in corrosion experiments, resulting in a higher breakdown potential and lower currents.
Fil: Manova, Darina. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany.
Fil: Mändl, Stephan. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany.
Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.
Fil: Escalada, Lisandro. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.
Fil: Simison, Silvia. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.
Fil: Escalada, Lisandro. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.
Fil: Simison, Silvia. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.
Peer Reviewed - Materia
-
Plasma nitriding
Stainless steel
Corrosion
Implantation - Nivel de accesibilidad
- acceso abierto
- Condiciones de uso
- 2016-07-05T01:59:31Z
- Repositorio
.jpg)
- Institución
- Universidad Tecnológica Nacional
- OAI Identificador
- oai:ria.utn.edu.ar:20.500.12272/872
Ver los metadatos del registro completo
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Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniquesManova, DarinaMändl, StephanBrühl, Sonia PatriciaEscalada, LisandroSimison, SilviaPlasma nitridingStainless steelCorrosionImplantationPlasma assisted surface modification methods have been used to nitride stainless steels in order to enhance hardness and therefore the lifetime of industrial componentes. Nevertheless, the corrosion resistance is not always preserved since it thermochemical diffusion techniques. AISI 316L stainless steel was plsma nitrided using three different techniques: Low Energy Ion Implantation (LEII), Plasma Immersion Implantation (PI3) and conventional DC pulsed plasma nitriding (DCPN). For each method several parameters were tested and some of them were selected to achieve the so called S phase of about e um thickness and no nitrides precipitation. The nitrided layer was characterized with OM and SEM. Hardness was assessed on the surface with Vickers indenter and 25 g load. XRD was performed to characterize the S phase and to detect other phases if present and electrochemical corrosion tests were carried out in 3,5% NaCI solution. Although the S phase thickness in the three groups of samples was comparable, hardness was not and neither was the corrosion resistance. The PI3 samples were the hardest with the best performance in corrosion experiments, resulting in a higher breakdown potential and lower currents.Fil: Manova, Darina. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany.Fil: Mändl, Stephan. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany.Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina.Fil: Escalada, Lisandro. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.Fil: Simison, Silvia. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.Fil: Escalada, Lisandro. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.Fil: Simison, Silvia. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina.Peer Reviewed2016-07-05T01:59:31Z2016-07-05T01:59:31Z2014-07-21info:eu-repo/semantics/conferenceObjectinfo:eu-repo/semantics/acceptedVersiondocunento de conferenciahttp://purl.org/coar/resource_type/c_5794info:ar-repo/semantics/documentoDeConferenciaapplication/pdfapplication/pdf1st Workshop on surface treatments of corrosion resistant alloys. Sau Paulo. Brazil.http://hdl.handle.net/20.500.12272/872engNovak CJ, Handbook of stainless steels. New York : McGraw-Hill; 1977 (Ch. 4).Lo KH, Shek CH, Lai JKL. Recent developments in stainless steels. Materials science and engineering R: Reports. 2009; R65: 39-104.Bell T. Current status of supersaturated surface egineered S-phase materials. Key engineering materials. 2008; 373-374: 289-295.Dong H, Qi PY, LI XY, Llewellyn RJ. Improving the erosion-corrosion resistance of AISI 316 austenitic stainless steel by Iow-temperature plasma surface alloyeng with N and C materials science and engineering A. 2006; 431: 137-145info:eu-repo/semantics/openAccess2016-07-05T01:59:31Zhttp://creativecommons.org/licenses/by-nc-nd/3.0/us/Manova, Darina ; Mändl, Stephan ; Brühl, Sonia Patricia ; Escalada, Lisandro ; Simison, SilviaNo comercial con fines académicos.Attribution-NonCommercial-NoDerivs 3.0 United Statesreponame:Repositorio Institucional Abierto (UTN)instname:Universidad Tecnológica Nacional2026-09-24T12:48:23Zoai:ria.utn.edu.ar:20.500.12272/872instacron: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 12:48:24.28Repositorio Institucional Abierto (UTN) - Universidad Tecnológica Nacionalfalse |
| dc.title.none.fl_str_mv |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| title |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| spellingShingle |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques Manova, Darina Plasma nitriding Stainless steel Corrosion Implantation |
| title_short |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| title_full |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| title_fullStr |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| title_full_unstemmed |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| title_sort |
Corrosion resistance of AISI 316L stainless steel nitrided by three different plasma assisted techniques |
| dc.creator.none.fl_str_mv |
Manova, Darina Mändl, Stephan Brühl, Sonia Patricia Escalada, Lisandro Simison, Silvia |
| author |
Manova, Darina |
| author_facet |
Manova, Darina Mändl, Stephan Brühl, Sonia Patricia Escalada, Lisandro Simison, Silvia |
| author_role |
author |
| author2 |
Mändl, Stephan Brühl, Sonia Patricia Escalada, Lisandro Simison, Silvia |
| author2_role |
author author author author |
| dc.subject.none.fl_str_mv |
Plasma nitriding Stainless steel Corrosion Implantation |
| topic |
Plasma nitriding Stainless steel Corrosion Implantation |
| dc.description.none.fl_txt_mv |
Plasma assisted surface modification methods have been used to nitride stainless steels in order to enhance hardness and therefore the lifetime of industrial componentes. Nevertheless, the corrosion resistance is not always preserved since it thermochemical diffusion techniques. AISI 316L stainless steel was plsma nitrided using three different techniques: Low Energy Ion Implantation (LEII), Plasma Immersion Implantation (PI3) and conventional DC pulsed plasma nitriding (DCPN). For each method several parameters were tested and some of them were selected to achieve the so called S phase of about e um thickness and no nitrides precipitation. The nitrided layer was characterized with OM and SEM. Hardness was assessed on the surface with Vickers indenter and 25 g load. XRD was performed to characterize the S phase and to detect other phases if present and electrochemical corrosion tests were carried out in 3,5% NaCI solution. Although the S phase thickness in the three groups of samples was comparable, hardness was not and neither was the corrosion resistance. The PI3 samples were the hardest with the best performance in corrosion experiments, resulting in a higher breakdown potential and lower currents. Fil: Manova, Darina. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany. Fil: Mändl, Stephan. Leibniz-Institut fur Oberflächenmodifizierung (OIM); Germany. Fil: Brühl, Sonia Patricia. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Ingeniería Electromecánica. Grupo de Ingeniería de Superficies; Argentina. Fil: Escalada, Lisandro. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina. Fil: Simison, Silvia. Universidad Nacional de Mar del Plata. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina. Fil: Escalada, Lisandro. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina. Fil: Simison, Silvia. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones en Ciencia y Tecnología de Materiales; Argentina. Peer Reviewed |
| description |
Plasma assisted surface modification methods have been used to nitride stainless steels in order to enhance hardness and therefore the lifetime of industrial componentes. Nevertheless, the corrosion resistance is not always preserved since it thermochemical diffusion techniques. AISI 316L stainless steel was plsma nitrided using three different techniques: Low Energy Ion Implantation (LEII), Plasma Immersion Implantation (PI3) and conventional DC pulsed plasma nitriding (DCPN). For each method several parameters were tested and some of them were selected to achieve the so called S phase of about e um thickness and no nitrides precipitation. The nitrided layer was characterized with OM and SEM. Hardness was assessed on the surface with Vickers indenter and 25 g load. XRD was performed to characterize the S phase and to detect other phases if present and electrochemical corrosion tests were carried out in 3,5% NaCI solution. Although the S phase thickness in the three groups of samples was comparable, hardness was not and neither was the corrosion resistance. The PI3 samples were the hardest with the best performance in corrosion experiments, resulting in a higher breakdown potential and lower currents. |
| publishDate |
2014 |
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2014-07-21 2016-07-05T01:59:31Z 2016-07-05T01:59:31Z |
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info:eu-repo/semantics/conferenceObject info:eu-repo/semantics/acceptedVersion docunento de conferencia http://purl.org/coar/resource_type/c_5794 info:ar-repo/semantics/documentoDeConferencia |
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acceptedVersion |
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1st Workshop on surface treatments of corrosion resistant alloys. Sau Paulo. Brazil. http://hdl.handle.net/20.500.12272/872 |
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1st Workshop on surface treatments of corrosion resistant alloys. Sau Paulo. Brazil. |
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http://hdl.handle.net/20.500.12272/872 |
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eng |
| language |
eng |
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Novak CJ, Handbook of stainless steels. New York : McGraw-Hill; 1977 (Ch. 4). Lo KH, Shek CH, Lai JKL. Recent developments in stainless steels. Materials science and engineering R: Reports. 2009; R65: 39-104. Bell T. Current status of supersaturated surface egineered S-phase materials. Key engineering materials. 2008; 373-374: 289-295. Dong H, Qi PY, LI XY, Llewellyn RJ. Improving the erosion-corrosion resistance of AISI 316 austenitic stainless steel by Iow-temperature plasma surface alloyeng with N and C materials science and engineering A. 2006; 431: 137-145 |
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info:eu-repo/semantics/openAccess 2016-07-05T01:59:31Z http://creativecommons.org/licenses/by-nc-nd/3.0/us/ Manova, Darina ; Mändl, Stephan ; Brühl, Sonia Patricia ; Escalada, Lisandro ; Simison, Silvia No comercial con fines académicos. Attribution-NonCommercial-NoDerivs 3.0 United States |
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openAccess |
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2016-07-05T01:59:31Z http://creativecommons.org/licenses/by-nc-nd/3.0/us/ Manova, Darina ; Mändl, Stephan ; Brühl, Sonia Patricia ; Escalada, Lisandro ; Simison, Silvia No comercial con fines académicos. Attribution-NonCommercial-NoDerivs 3.0 United States |
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