prodotto o Abstract .Deposition of Titanium Carbide coatings on Ti6Al4V substrate, through the reactive magnetron sputtering technique is here presented. The mechanical characterization of the coatings has been carried out through a set of indentation tests at different maximum applied loads. The elastic stiffness as well as the hardness of the coating-substrate system indicate that these coatings are suitable candidates for wear resistance applications in the orthopaedic field. Numerical simulation of the indentation tests allowed the identification of the constitutive parameters of the titanium carbide. Good agreement was achieved between experimental and numerical results. © 2008 American Institute of Physics
Ideal biomaterials to fabricate orthopedic implants, especially for load-bearing joint replacements,...
Carbide coatings deposited by PVD techniques can provide different properties according to their str...
Tenacity and fracture toughness of a novel β/α″ Ti-22Nb-10Zr (wt.%) coating processed by magnetron s...
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AbstractAlthough calcium titanate has been proposed as a coating for biomedical applications, a char...
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DLC (diamond-like carbon) coatings have remarkable tribological properties due mainly to their good ...
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Ti/TiN biocompatible multilayers were deposited on 316L stainless steel substrates by reactive magne...
During the last few decades, a growing demand for medical implants may be observed on the market. Th...
Ideal biomaterials to fabricate orthopedic implants, especially for load-bearing joint replacements,...
Carbide coatings deposited by PVD techniques can provide different properties according to their str...
Tenacity and fracture toughness of a novel β/α″ Ti-22Nb-10Zr (wt.%) coating processed by magnetron s...
TiNbN coatings are being applied to orthopaedic hip and knee implants for the purpose of improved we...
Titanium carbide coatings were deposited on stainless steel (AISI 316) by using unbalanced magnetron...
Nanostructured cermet coatings consisting of titanium carbides dispersed in a titanium matrix were d...
TiNbN coatings are being applied to orthopaedic hip and knee implants for the purpose of improved we...
Abstract: The challenges in surface engineering coupled with the modeling and simulation of corrosiv...
AbstractAlthough calcium titanate has been proposed as a coating for biomedical applications, a char...
Titanium carbide (TiC) hard coatings have been obtained on steel and silicon substrates by rf magnet...
185 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1981.Mechanical properties of surf...
DLC (diamond-like carbon) coatings have remarkable tribological properties due mainly to their good ...
One the most important limitations to the industrial use of hard coatings in severe conditions is as...
Ti/TiN biocompatible multilayers were deposited on 316L stainless steel substrates by reactive magne...
During the last few decades, a growing demand for medical implants may be observed on the market. Th...
Ideal biomaterials to fabricate orthopedic implants, especially for load-bearing joint replacements,...
Carbide coatings deposited by PVD techniques can provide different properties according to their str...
Tenacity and fracture toughness of a novel β/α″ Ti-22Nb-10Zr (wt.%) coating processed by magnetron s...