[HTML][HTML] Selecting medium for corrosion testing of bioabsorbable magnesium and other metals–a critical review

D Mei, SV Lamaka, X Lu, ML Zheludkevich - Corrosion science, 2020 - Elsevier
Corrosion testing of bioabsorbable metallic materials is important at material selection stage
and for understanding their degradation mechanisms. A large variety of different corrosive …

A general perspective of Fe–Mn–Al–C steels

OA Zambrano - Journal of materials science, 2018 - Springer
During the last years, the scientific and industrial community has focused on the astonishing
properties of Fe–Mn–Al–C steels. These high advanced steels allow high-density reductions …

[HTML][HTML] Extrusion-based 3D printing of biodegradable, osteogenic, paramagnetic, and porous FeMn-akermanite bone substitutes

NE Putra, MA Leeflang, M Klimopoulou, J Dong… - Acta Biomaterialia, 2023 - Elsevier
The development of biodegradable Fe-based bone implants has rapidly progressed in
recent years. Most of the challenges encountered in developing such implants have been …

Fabrication, characterization and evaluating properties of 3D printed PLA-Mn scaffolds

S Dehghan-Toranposhti, R Bakhshi, R Alizadeh… - Scientific Reports, 2024 - nature.com
Polylactic acid (PLA) based scaffolds have attained considerable attention in recent years
for being used as biodegradable implants in bone tissue engineering (BTE), owing to their …

[HTML][HTML] Extrusion-based 3D printing of ex situ-alloyed highly biodegradable MRI-friendly porous iron-manganese scaffolds

NE Putra, MA Leeflang, P Taheri, LE Fratila-Apachitei… - Acta Biomaterialia, 2021 - Elsevier
Additively manufactured biodegradable porous iron has been only very recently
demonstrated. Two major limitations of such a biomaterial are very low biodegradability and …

Addressing the slow corrosion rate of biodegradable Fe-Mn: Current approaches and future trends

J Venezuela, MS Dargusch - Current Opinion in Solid State and Materials …, 2020 - Elsevier
The movement towards the commercialization of biodegradable Fe has been hampered by
the perceived slow degradation rate of the metal in physiological environments. The …

[HTML][HTML] Biodegradation behaviour of Fe-based alloys in Hanks' Balanced Salt Solutions: Part I. material characterisation and corrosion testing

C Tonna, C Wang, D Mei, SV Lamaka… - Bioactive materials, 2022 - Elsevier
Research on Fe-based biodegradable alloys for implant applications has increased
considerably over the past decade. However, there is limited information on the influence of …

Exploring the role of manganese on the microstructure, mechanical properties, biodegradability, and biocompatibility of porous iron-based scaffolds

MS Dargusch, A Dehghan-Manshadi… - ACS Biomaterials …, 2019 - ACS Publications
In this work, the role that manganese plays in determining the structure and performance of
sintered biodegradable porous Fe–Mn alloys is described. Powder metallurgy processing …

[HTML][HTML] Degradation behavior of austenite, ferrite, and martensite present in biodegradable Fe-based alloys in three protein-rich pseudo-physiological solutions

A Cherqaoui, QN Cao, ML Gatto, C Paternoster… - Bioactive Materials, 2024 - Elsevier
This study investigates the degradation behavior of three distinct Fe-based alloys immersed
in three pseudo-physiological solutions. These alloys, which have varied Mn and C …

Novel biodegradable Fe-Mn-CS alloy with superior mechanical and corrosion properties

J Hufenbach, H Wendrock, F Kochta, U Kühn, A Gebert - Materials Letters, 2017 - Elsevier
Due to their broad range of properties and excellent processability, Fe-based alloys are
considered as potential biodegradable implant materials. In this study, Fe-30Mn-1C and …