Tribological behavior and biocompatibility of novel Nickel-Free stainless steel manufactured via laser powder bed fusion for biomedical applications
Publiceringsår
2024
Upphovspersoner
Nayak, Chinmayee ; Anand, Abhinav; Kamboj, Nikhil; Kantonen, Tuomas; Kajander, Karoliina; Tupala, Vilma; Heino, Terhi J.; Cherukuri, Rahul; Mohanty, Gaurav; Capek, Jan ; Polatidis, Efthymios; Goel, Sneha; Salminen, Antti; Ganvir, Ashish
Abstrakt
<p>Due to the risk of releasing carcinogenic nickel ions from conventional 316L stainless steel under a corrosive human body environment, a new variant of steel termed nickel-free stainless steel (NiFSS) has been investigated. The present study investigates the tribological properties and biocompatibility of NiFSS manufactured via laser powder bed fusion (PBF-LB/M). The ferritic NiFSS exhibited significantly lower coefficient of friction (0.08 to 0.28) and wear rate (1.60 × 10<sup>-6</sup> mm<sup>3</sup>/Nm to 6.60 × 10<sup>-6</sup> mm<sup>3</sup>/Nm) compared to reported values for austenitic 316L SS, under both dry and simulated body fluid (SBF) conditions and various sliding geometries. This improvement is attributed to the superior hardness (3.394 ± 0.1340 GPa) and elastic modulus (238 ± 9.0797 GPa) of NiFSS. To assess the biocompatibility, the viability of mouse pre-osteoblastic MC3T3-E1 cells was evaluated with an Alamar Blue assay when the cells were cultured on top of PBF-LB/M built NiFSS and 316L SS samples. The results indicated that even though cell growth was most optimal on regular cell culture plastic, cell viability was better maintained on PBF-LB/M built NiFSS compared to 316L SS. Therefore, the results of the present study propose that PBF-LB/M fabricated NiFSS holds promise for application in biomedical devices for joint arthroplasty.</p>
Visa merOrganisationer och upphovspersoner
Åbo universitet
Kajander Karoliina
Heino Terhi
ANAND ABHINAV
Salminen Antti
Ganvir Ashish
Nayak Chinmayee
Kantonen Johannes
Kamboj Nikhil
Goel Sneha
Teknologiska forskningscentralen VTT Ab
Goel Sneha
Publikationstyp
Publikationsform
Artikel
Moderpublikationens typ
Tidning
Artikelstyp
En originalartikel
Målgrupp
VetenskapligKollegialt utvärderad
Kollegialt utvärderadUKM:s publikationstyp
A1 Originalartikel i en vetenskaplig tidskriftPublikationskanalens uppgifter
Journal/Serie
Volym
242
Artikelnummer
113013
ISSN
Publikationsforum
Publikationsforumsnivå
3
Öppen tillgång
Öppen tillgänglighet i förläggarens tjänst
Ja
Öppen tillgång till publikationskanalen
Helt öppen publikationskanal
Licens för förläggarens version
CC BY
Parallellsparad
Ja
Övriga uppgifter
Vetenskapsområden
Maskin- och produktionsteknik; Materialteknik; Miljöteknik; Biomedicinska vetenskaper
Nyckelord
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Förlagets internationalitet
Internationell
Språk
engelska
Internationell sampublikation
Ja
Sampublikation med ett företag
Nej
DOI
10.1016/j.matdes.2024.113013
Publikationen ingår i undervisnings- och kulturministeriets datainsamling
Ja