Impact based surface treatments with adequate kinetic energy have favorable effects on promoting cell-substrate interactions, reducing bacterial adhesion, and enhancing fatigue performance of metallic biomaterials. Here, we used both numerical and experimental approaches to evaluate the potential of these treatments for addressing the major issue associated with the application of pure iron in biomedical implants, i.e. its low corrosion rate. Despite the efficiency of impact based surface treatments in modulating the degradation rate of pure iron, the maximum reported depth of the affected surface layer is still limited, even when extreme process parameters are used. To address this issue, herein, two impact based treatments were adjusted t...
Nowadays, coronary permanent stents are used to open clogged arteries. However, after 6 to 12 months...
Iron (Fe) and Fe-based materials have been vigorously explored in orthopedic applications in the pas...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Impact based surface treatments with adequate kinetic energy have favorable effects on promoting cel...
Pure iron and its biocompatible and biodegradable alloys have a high potential to be used for tempor...
Fe-based materials are of interest for use in biodegradable implants. However, their corrosion rate ...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
International audienceMechanical surface treatments are known for their ability to improve material ...
Substrate grain structure and topography play major roles in mediating cell and bacteria activities....
Ultrasonic shot peening (USSP) is an effective method for surface modification of metallic materials...
Biodegradable pure iron has gained significant interest as a biomedical material. For biodegradable ...
Nowadays, coronary permanent stents are used to open clogged artery. However, after 6 to 12 months t...
The mechanical surface treatments confer better local mechanical properties against wear or fatigue ...
Nowadays, coronary permanent stents are used to open clogged arteries. However, after 6 to 12 months...
Iron (Fe) and Fe-based materials have been vigorously explored in orthopedic applications in the pas...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Impact based surface treatments with adequate kinetic energy have favorable effects on promoting cel...
Pure iron and its biocompatible and biodegradable alloys have a high potential to be used for tempor...
Fe-based materials are of interest for use in biodegradable implants. However, their corrosion rate ...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
International audienceMechanical surface treatments are known for their ability to improve material ...
Substrate grain structure and topography play major roles in mediating cell and bacteria activities....
Ultrasonic shot peening (USSP) is an effective method for surface modification of metallic materials...
Biodegradable pure iron has gained significant interest as a biomedical material. For biodegradable ...
Nowadays, coronary permanent stents are used to open clogged artery. However, after 6 to 12 months t...
The mechanical surface treatments confer better local mechanical properties against wear or fatigue ...
Nowadays, coronary permanent stents are used to open clogged arteries. However, after 6 to 12 months...
Iron (Fe) and Fe-based materials have been vigorously explored in orthopedic applications in the pas...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...