Commonly used severe plastic deformation (SPD) methods are suitable for fabrication of bulk nano and ultrafine-grained metals. Drawbacks of these methods include durability of dies, geometrical restrictions and reduced ductility of the products. In this study, two common machining techniques used in manufacturing of orthopaedic components, turning and milling, were applied on 316L stainless steel as surface SPD to refine the surface microstructures of the workpiece. Machining with optimised parameters resulted in substantial grain refinement down to 98 nm on the surfaces. Biological experiments showed up to ∼70% and ∼280% increased bone cell density on milled and turned samples compared to conventionally machined 316L stainless steel at 5 d...
A nanostructured surface layer (NSSL) was generated on a 316L stainless steel plate through surface ...
The low hardness and poor wear resistance of AISI 316 L austenitic stainless-steel sabotage its oute...
In this study, equal-channel angular pressing (ECAP) of austenitic 316L and Cr-Ni-Ti stainless steel...
End milling is a potential machining technique for difficult to cut materials such as stainless ste...
Nanostructured materials exhibit superior properties with respect to their bulk counterpart. Recentl...
Substrate grain structure and topography play major roles in mediating cell and bacteria activities....
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Thermo-mechanical processing plays an important role in materials property optimization through micr...
Thermo-mechanical processing plays an important role in materials property optimization through micr...
The study addresses how surface nanostructuring of AISI 304 stainless steel (SS) by surface mechanic...
Among additive manufacturing (AM) techniques, Selective Laser Melting (SLM) is widely used to fabric...
Commercially pure titanium (cp-Ti) is an ideal biomaterial as it does not evoke an inflammatory fore...
316L stainless steel is most commonly used biomaterials for cardiovascular stents. Despite its wides...
Medical grade 316L stainless steel was laser surface melted (LSM) using continuous wave Nd-YAG laser...
International audienceThis paper discusses the mechanical properties of a nanocrystallised stainless...
A nanostructured surface layer (NSSL) was generated on a 316L stainless steel plate through surface ...
The low hardness and poor wear resistance of AISI 316 L austenitic stainless-steel sabotage its oute...
In this study, equal-channel angular pressing (ECAP) of austenitic 316L and Cr-Ni-Ti stainless steel...
End milling is a potential machining technique for difficult to cut materials such as stainless ste...
Nanostructured materials exhibit superior properties with respect to their bulk counterpart. Recentl...
Substrate grain structure and topography play major roles in mediating cell and bacteria activities....
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Thermo-mechanical processing plays an important role in materials property optimization through micr...
Thermo-mechanical processing plays an important role in materials property optimization through micr...
The study addresses how surface nanostructuring of AISI 304 stainless steel (SS) by surface mechanic...
Among additive manufacturing (AM) techniques, Selective Laser Melting (SLM) is widely used to fabric...
Commercially pure titanium (cp-Ti) is an ideal biomaterial as it does not evoke an inflammatory fore...
316L stainless steel is most commonly used biomaterials for cardiovascular stents. Despite its wides...
Medical grade 316L stainless steel was laser surface melted (LSM) using continuous wave Nd-YAG laser...
International audienceThis paper discusses the mechanical properties of a nanocrystallised stainless...
A nanostructured surface layer (NSSL) was generated on a 316L stainless steel plate through surface ...
The low hardness and poor wear resistance of AISI 316 L austenitic stainless-steel sabotage its oute...
In this study, equal-channel angular pressing (ECAP) of austenitic 316L and Cr-Ni-Ti stainless steel...