Diamond-like carbon (DLC) films have been successfully deposited on Ti-50.8 at.%Ni using plasma based ion implantation (PBII) technique. The influences of the pulsed negative bias voltage applied to the substrate from 12 kV to 40 kV on the structure, nano-indentation hardness and Young's modulus are investigated by the X-ray photoelectron spectroscopy (XPS) and nano-indentation technique. The results show that C 1s peak depends heavily on the bias voltage. With the increase of bias voltage, the ratio of sp2/sp3 first decreases, reaching a minimum value at 20 kV, and then increases. The DLC coating deposited at 20 kV shows the highest hardness and elastic modulus values as a result of lower sp2/sp3 ratio. The corrosion resistance of spe...
Thin coatings are often utilized in cutting tools and wear applications to improve their lifetime an...
Diamond-like carbon (DLC) films are deposited by bend filtered cathodic vacuum arc (FCVA) technique ...
TiN coatings were deposited on the surface of Ti-50.6 at.% Ni alloy by the advanced plasma immersion...
Diamond-like carbon (DLC) films have been successfully deposited on Ti-50.8 at.% Ni using plasma bas...
Diamond-like carbon (DLC) films were successfully deposited on Ti-50.8at%Ni using plasma based ion i...
Diamond-like carbon (DLC) films have been successfully deposited on Ti-50.8 at.% Ni alloys using pla...
Ti-TiC-TiC/diamond-like carbon (DLC) gradient nano-composite films have been prepared on NiTi alloy ...
An investigation has been carried out to study the effect of pulse negative bias voltage on the morp...
Titanium copper-diamond-like carbon (Ti:Cu)-DLC films were deposited onto silicon via cathodic arc e...
Diamond-like carbon (DLC) films were prepared by a plasma source ion implantation method with superp...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp 3 bonding. DLC fi...
TiN coatings with the characteristics of excellent corrosion and wear resistance, high hardness and ...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp3 bonding. DLC fil...
AbstractThe purpose of this paper is to investigate metal doping effects on micro-structural, mechan...
Ti-TiC-TiC/DLC gradient nano-composite films have been prepared on the NiTi substrates by the techni...
Thin coatings are often utilized in cutting tools and wear applications to improve their lifetime an...
Diamond-like carbon (DLC) films are deposited by bend filtered cathodic vacuum arc (FCVA) technique ...
TiN coatings were deposited on the surface of Ti-50.6 at.% Ni alloy by the advanced plasma immersion...
Diamond-like carbon (DLC) films have been successfully deposited on Ti-50.8 at.% Ni using plasma bas...
Diamond-like carbon (DLC) films were successfully deposited on Ti-50.8at%Ni using plasma based ion i...
Diamond-like carbon (DLC) films have been successfully deposited on Ti-50.8 at.% Ni alloys using pla...
Ti-TiC-TiC/diamond-like carbon (DLC) gradient nano-composite films have been prepared on NiTi alloy ...
An investigation has been carried out to study the effect of pulse negative bias voltage on the morp...
Titanium copper-diamond-like carbon (Ti:Cu)-DLC films were deposited onto silicon via cathodic arc e...
Diamond-like carbon (DLC) films were prepared by a plasma source ion implantation method with superp...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp 3 bonding. DLC fi...
TiN coatings with the characteristics of excellent corrosion and wear resistance, high hardness and ...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp3 bonding. DLC fil...
AbstractThe purpose of this paper is to investigate metal doping effects on micro-structural, mechan...
Ti-TiC-TiC/DLC gradient nano-composite films have been prepared on the NiTi substrates by the techni...
Thin coatings are often utilized in cutting tools and wear applications to improve their lifetime an...
Diamond-like carbon (DLC) films are deposited by bend filtered cathodic vacuum arc (FCVA) technique ...
TiN coatings were deposited on the surface of Ti-50.6 at.% Ni alloy by the advanced plasma immersion...