Small amplitude (50 μm) reciprocating wear of hydrogen-containing diamond-like carbon (DLC) films of different compositions has been examined against silicon nitride and polymethyl-methacrylate (PMMA) counter-surfaces, and compared with the performance of an uncoated steel substrate. Three films were studied: a DLC film of conventional composition, a fluorine-containing DLC film (F-DLC), and silicon-containing DLC film. The films were deposited on steel substrates from plasmas of organic precursor gases using the Plasma Immersion Ion Implantation and Deposition (PIIID) process, which allows for the non-line-of-sight deposition of films with tailored compositions. The amplitude of the resistive frictional force during the reciprocating wear ...
The mechanical and tribological properties of three types of diamond like carbon (DLC) coatings, i.e...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
In this study, we investigated the effects of various source gases (i. e., methane, ethane, ethylene...
Small amplitude (50 μm) reciprocating wear of hydrogen-containing diamond-like carbon (DLC) films of...
Small amplitude (50 μm) reciprocating wear of hydrogen-containing diamond-like carbon (DLC) films of...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Diamond-like carbon (DLC) films are amorphous metastable carbon form that provide interesting mechan...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Two diamond-like carbon coatings have been examined, both prior to, and post tribotesting. Physical–...
Diamond – like carbon (DLC) film is promising materials for many technical and engineering applicati...
Diamond – like carbon (DLC) film is promising materials for many technical and engineering applicati...
The pin-on-plate friction test was carried out to clarify the mechanism of low friction coefficient ...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Recent work on the friction and wear properties of as-deposited fine-grain diamond, polished coarse-...
The mechanical and tribological properties of three types of diamond like carbon (DLC) coatings, i.e...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
In this study, we investigated the effects of various source gases (i. e., methane, ethane, ethylene...
Small amplitude (50 μm) reciprocating wear of hydrogen-containing diamond-like carbon (DLC) films of...
Small amplitude (50 μm) reciprocating wear of hydrogen-containing diamond-like carbon (DLC) films of...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Diamond-like carbon (DLC) films are amorphous metastable carbon form that provide interesting mechan...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Two diamond-like carbon coatings have been examined, both prior to, and post tribotesting. Physical–...
Diamond – like carbon (DLC) film is promising materials for many technical and engineering applicati...
Diamond – like carbon (DLC) film is promising materials for many technical and engineering applicati...
The pin-on-plate friction test was carried out to clarify the mechanism of low friction coefficient ...
Reciprocating micro-scale sliding tests and micro-scale repetitive impact tests were performed with ...
Recent work on the friction and wear properties of as-deposited fine-grain diamond, polished coarse-...
The mechanical and tribological properties of three types of diamond like carbon (DLC) coatings, i.e...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
In this study, we investigated the effects of various source gases (i. e., methane, ethane, ethylene...