The properties of cold-worked Fe-13Mn-1.2C steel, as candidate material for scaffolding and stenting applications, have been investigated. The study of the electrochemical corrosion susceptibility of Fe-13Mn-1.2C alloy in protein bearing and non-protein bearing physiological solutions, revealed that there were no differences between the as-received, 10% and 20% cold worked Fe-13Mn-1.2C samples. Although protein addition reduces the overall corrosion rate in static immersion degradation tests for both the cold worked and non-cold worked alloys, there were no discernible differences in the corrosion rates of samples with different percentages of cold work deformations. Similarly, potentiodynamic testing showed no differences between the corro...
Fe-based alloys are of increasing interest for the use as bioresorbable materials. Their mechanical ...
Biodegradable materials are becoming progressively of interest for stent applications. However, duri...
The addition of noble elements such as Ag was shown as a successful method to accelerate the corrosi...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
Nowadays, alongside metallic biomaterials, there is increasing interest in using degradable metals i...
The electrochemical behavior of potential orthopedic Mg-Ca, AZ31 and AZ91 alloys was studied in Hank...
The idea of bioabsorbable/biocorrodible stents has gained increasing attention in the last decade. P...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
The electrochemical behavior of potential orthopedic Mg–Ca, AZ31 and AZ91 alloys was studied in Hank...
Austenitic Fe-30Mn-1C (FeMnC) is a prospective biodegradable implant material combining high mechani...
Commercially pure Fe, Fe35Mn, and (Fe35Mn)5Ag alloys were prepared by uniaxial pressing of the mixtu...
Fe–Mn alloys are promising candidates for less-invasive and temporary implants such as bioabsorbable...
The Fe-based alloy with manganese led to the appearance of new austenitic alloys, with the antiferro...
Research on Fe-based biodegradable alloys for implant applications has increased considerably over t...
The main limitation to the clinical application of magnesium alloys is their too-fast degradation ra...
Fe-based alloys are of increasing interest for the use as bioresorbable materials. Their mechanical ...
Biodegradable materials are becoming progressively of interest for stent applications. However, duri...
The addition of noble elements such as Ag was shown as a successful method to accelerate the corrosi...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
Nowadays, alongside metallic biomaterials, there is increasing interest in using degradable metals i...
The electrochemical behavior of potential orthopedic Mg-Ca, AZ31 and AZ91 alloys was studied in Hank...
The idea of bioabsorbable/biocorrodible stents has gained increasing attention in the last decade. P...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
The electrochemical behavior of potential orthopedic Mg–Ca, AZ31 and AZ91 alloys was studied in Hank...
Austenitic Fe-30Mn-1C (FeMnC) is a prospective biodegradable implant material combining high mechani...
Commercially pure Fe, Fe35Mn, and (Fe35Mn)5Ag alloys were prepared by uniaxial pressing of the mixtu...
Fe–Mn alloys are promising candidates for less-invasive and temporary implants such as bioabsorbable...
The Fe-based alloy with manganese led to the appearance of new austenitic alloys, with the antiferro...
Research on Fe-based biodegradable alloys for implant applications has increased considerably over t...
The main limitation to the clinical application of magnesium alloys is their too-fast degradation ra...
Fe-based alloys are of increasing interest for the use as bioresorbable materials. Their mechanical ...
Biodegradable materials are becoming progressively of interest for stent applications. However, duri...
The addition of noble elements such as Ag was shown as a successful method to accelerate the corrosi...