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Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS

In the last years, additive manufacturing technologies have been developed, especially direct metal laser sintering, and used in the dental and medical implant domains. Cardiovascular stents have evolved from bioinert, bare metal cages to biomimetic devices that promote tissue regeneration or healin...

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Autores principales: Băilă, Diana-Irinel, Păcurar, Răzvan, Savu, Tom, Zaharia, Cătălin, Trușcă, Roxana, Nemeș, Ovidiu, Górski, Filip, Păcurar, Ancuța, Pleșa, Alin, Sabău, Emilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9412485/
https://www.ncbi.nlm.nih.gov/pubmed/36013717
http://dx.doi.org/10.3390/ma15165580
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author Băilă, Diana-Irinel
Păcurar, Răzvan
Savu, Tom
Zaharia, Cătălin
Trușcă, Roxana
Nemeș, Ovidiu
Górski, Filip
Păcurar, Ancuța
Pleșa, Alin
Sabău, Emilia
author_facet Băilă, Diana-Irinel
Păcurar, Răzvan
Savu, Tom
Zaharia, Cătălin
Trușcă, Roxana
Nemeș, Ovidiu
Górski, Filip
Păcurar, Ancuța
Pleșa, Alin
Sabău, Emilia
author_sort Băilă, Diana-Irinel
collection PubMed
description In the last years, additive manufacturing technologies have been developed, especially direct metal laser sintering, and used in the dental and medical implant domains. Cardiovascular stents have evolved from bioinert, bare metal cages to biomimetic devices that promote tissue regeneration or healing. In this paper, comparisons concerning mechanical properties between Co–Cr alloy and cast 304L stainless steel were realized using FEM analysis, necessary for manufacturing cardiovascular stents by DMLS technology using Co–Cr alloy. The purpose of this paper consists of the evaluation of the contact angle at the interface of the Co–Cr alloy manufactured by DMLS, respectively, cast stainless steel 304L, and thin film deposition realized by the e-gun method (Ta(2)O(5) and ZnO). Scanning electronic microscopy SEM and EDX techniques were employed for morphological investigation of the sintered samples manufactured by the DMLS process. They were also used for semi-quantitative and qualitative chemical and metallographic analyses. The e-gun coating was used to obtain thin films with the nanometer order of Ta(2)O(5) and ZnO with a protective role to improve the corrosion resistance, roughness, and antiseptic role.
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spelling pubmed-94124852022-08-27 Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS Băilă, Diana-Irinel Păcurar, Răzvan Savu, Tom Zaharia, Cătălin Trușcă, Roxana Nemeș, Ovidiu Górski, Filip Păcurar, Ancuța Pleșa, Alin Sabău, Emilia Materials (Basel) Article In the last years, additive manufacturing technologies have been developed, especially direct metal laser sintering, and used in the dental and medical implant domains. Cardiovascular stents have evolved from bioinert, bare metal cages to biomimetic devices that promote tissue regeneration or healing. In this paper, comparisons concerning mechanical properties between Co–Cr alloy and cast 304L stainless steel were realized using FEM analysis, necessary for manufacturing cardiovascular stents by DMLS technology using Co–Cr alloy. The purpose of this paper consists of the evaluation of the contact angle at the interface of the Co–Cr alloy manufactured by DMLS, respectively, cast stainless steel 304L, and thin film deposition realized by the e-gun method (Ta(2)O(5) and ZnO). Scanning electronic microscopy SEM and EDX techniques were employed for morphological investigation of the sintered samples manufactured by the DMLS process. They were also used for semi-quantitative and qualitative chemical and metallographic analyses. The e-gun coating was used to obtain thin films with the nanometer order of Ta(2)O(5) and ZnO with a protective role to improve the corrosion resistance, roughness, and antiseptic role. MDPI 2022-08-14 /pmc/articles/PMC9412485/ /pubmed/36013717 http://dx.doi.org/10.3390/ma15165580 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Băilă, Diana-Irinel
Păcurar, Răzvan
Savu, Tom
Zaharia, Cătălin
Trușcă, Roxana
Nemeș, Ovidiu
Górski, Filip
Păcurar, Ancuța
Pleșa, Alin
Sabău, Emilia
Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title_full Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title_fullStr Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title_full_unstemmed Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title_short Mechanical and Wetting Properties of Ta(2)O(5) and ZnO Coatings on Alloy Substrate of Cardiovascular Stents Manufactured by Casting and DMLS
title_sort mechanical and wetting properties of ta(2)o(5) and zno coatings on alloy substrate of cardiovascular stents manufactured by casting and dmls
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9412485/
https://www.ncbi.nlm.nih.gov/pubmed/36013717
http://dx.doi.org/10.3390/ma15165580
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