The deformation mechanisms operating in diamond-like carbon (DLC) coatings on (100) and (111) Si, has been investigated. The effect of coating thickness, indenter geometry, substrate orientation and deposition technique on the deformation of DLC coatings and the underlying substrate was studied by undertaking nanoindentation followed by subsurface microstructural characterization. Uncoated (111) Si was also investigated for comparison. The observed microstructural features were correlated to the indentation response of the coatings and compared with simulation studies, as well as observations on uncoated Si.In uncoated (111) Si, phase transformation was found to be responsible for the discontinuities in the load-displacement curves, similar...
Friction and wear minimizing coatings are crucial for applications in combustion engines and medical...
Diamond-like carbon (DLC) coatings are becoming increasingly popular in the automotive industry due ...
Diamond-like carbon coatings (DLC) combine high wear resistance with low friction coefficients. Both...
The determination of mechanical properties of thin films is of crucial interest for applications of ...
The effect of substrate roughness on the contact damage of diamond-like carbon (DLC) coatings has be...
The aim present work was to deposit and study nanostructured diamond-like carbon coatings with silic...
A diamondlike carbon (DLC) thin film was deposited onto a stainless steel substrate using a plasma-e...
In situ SEM scratch testing of DLC and Si-doped DLC deposited on Si wafers has been conducted using...
ABSTRACT: Diamond-like carbon (DLC) films as a hard protective coating have achieved great success i...
Nanoindentation is a depth sensing indentation technique to probe the mechanical properties of small...
In this paper, diamond-like carbon (DLC) films and DLC-Si films were studied. These films were depos...
This thesis presents the results of a study focussed on the elucidation of the mechanisms responsibl...
Friction and wear minimizing coatings are crucial for applications in combustion engines and medical...
This paper reports the study of silicon-doped diamond-like carbon coatings a-C:H:Si prepared by Plas...
A diamond-like carbon thin film was coated onto a stainless steel substrate using plasma assisted ch...
Friction and wear minimizing coatings are crucial for applications in combustion engines and medical...
Diamond-like carbon (DLC) coatings are becoming increasingly popular in the automotive industry due ...
Diamond-like carbon coatings (DLC) combine high wear resistance with low friction coefficients. Both...
The determination of mechanical properties of thin films is of crucial interest for applications of ...
The effect of substrate roughness on the contact damage of diamond-like carbon (DLC) coatings has be...
The aim present work was to deposit and study nanostructured diamond-like carbon coatings with silic...
A diamondlike carbon (DLC) thin film was deposited onto a stainless steel substrate using a plasma-e...
In situ SEM scratch testing of DLC and Si-doped DLC deposited on Si wafers has been conducted using...
ABSTRACT: Diamond-like carbon (DLC) films as a hard protective coating have achieved great success i...
Nanoindentation is a depth sensing indentation technique to probe the mechanical properties of small...
In this paper, diamond-like carbon (DLC) films and DLC-Si films were studied. These films were depos...
This thesis presents the results of a study focussed on the elucidation of the mechanisms responsibl...
Friction and wear minimizing coatings are crucial for applications in combustion engines and medical...
This paper reports the study of silicon-doped diamond-like carbon coatings a-C:H:Si prepared by Plas...
A diamond-like carbon thin film was coated onto a stainless steel substrate using plasma assisted ch...
Friction and wear minimizing coatings are crucial for applications in combustion engines and medical...
Diamond-like carbon (DLC) coatings are becoming increasingly popular in the automotive industry due ...
Diamond-like carbon coatings (DLC) combine high wear resistance with low friction coefficients. Both...