International audienceThe low energy (similar to 50-350 eV) noble gases ion bombardment of the steel surface shows that the pre-treatments increase nitrogen diffusion by modifying the outermost structure of the material. The surface microstructure and morphology of the studied samples were characterized by Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The crystalline and chemical structures in the outermost layers of the surface were analyzed by grazing angle X-ray diffraction (GAXRD) and photoemission electron spectroscopy (XPS). Temperature effusion studies of the implanted ions are used to elucidate the noble gases site localization in the network. The local compressive stress induced by the nearby iron atoms on t...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Studies of nitrogen implantation in an iron alloy using photoemission electron spectroscopy, sputter...
We present the results of a surface modification of AISI 316L stainless steel by surface irradiation...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The low energy (similar to 50-350 eV) n...
The saturation of the near surface layers of metals with different elements is a powerful tool to ch...
The surface composition of low alloy steel after + N2 implantation was studied with X-ray photo-elec...
A comprehensive study of pulsed nitriding in AISI H13 tool steel at low temperature (400 degrees C) ...
AbstractA study was performed to investigate the surface hardening mechanism of H13 steel after shot...
AbstractA comprehensive study of pulsed nitriding in AISI H13 tool steel at low temperature (400°C) ...
Plasma immersion ion implantation (PIII) is an advanced, plasma-assisted surface engineering techniq...
In this paper we report the effect of hydrogen on the structural properties of AISI-H13 steel nitrog...
A surface hardenable low alloy carbon steel was implanted with medium energy (20-50 KeV) N2 + ions t...
Investigations were carried out into the possibilities of obtaining special properties of the surfac...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
The micro-structural changes of an austenitic steel with high-nitrogen content have been investigate...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Studies of nitrogen implantation in an iron alloy using photoemission electron spectroscopy, sputter...
We present the results of a surface modification of AISI 316L stainless steel by surface irradiation...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The low energy (similar to 50-350 eV) n...
The saturation of the near surface layers of metals with different elements is a powerful tool to ch...
The surface composition of low alloy steel after + N2 implantation was studied with X-ray photo-elec...
A comprehensive study of pulsed nitriding in AISI H13 tool steel at low temperature (400 degrees C) ...
AbstractA study was performed to investigate the surface hardening mechanism of H13 steel after shot...
AbstractA comprehensive study of pulsed nitriding in AISI H13 tool steel at low temperature (400°C) ...
Plasma immersion ion implantation (PIII) is an advanced, plasma-assisted surface engineering techniq...
In this paper we report the effect of hydrogen on the structural properties of AISI-H13 steel nitrog...
A surface hardenable low alloy carbon steel was implanted with medium energy (20-50 KeV) N2 + ions t...
Investigations were carried out into the possibilities of obtaining special properties of the surfac...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
The micro-structural changes of an austenitic steel with high-nitrogen content have been investigate...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Studies of nitrogen implantation in an iron alloy using photoemission electron spectroscopy, sputter...
We present the results of a surface modification of AISI 316L stainless steel by surface irradiation...