Surface and coatings technology: 13th international conference on surface modification of materials by ion beams, San Antonio, Texas, 21-26 September, 2003Nitriding of an austenitic stainless steel (ASS) at moderate temperature (400 °C) increases significantly its hardness without loss of corrosion resistance. This study presents the first comparison between single crystalline ([001], [011] and [013] orientations) and polycrystalline 316L ASS ion beam nitriding. The current density, ion energy and temperature were 0.5 mA·cm−2, 1.2 keV and 400 °C, respectively. The nitrogen distribution profiles were measured by nuclear reaction analysis (NRA). A notable difference of nitrogen penetration between polycrystalline and single-crystalline sample...
Austenitic stainless steel single crystals ($Fe_{69}Cr_{16}Ni_{12}$) have been implanted with 30 ke ...
Austenitic stainless steels are the preferred materials for mechanical components in the food, oil a...
Ion nitriding of austenitic stainless steels induces formation of hard surface layers which maintain...
Article Number: 083531Polycrystalline and single crystalline [orientations (001) and (011)] AISI 316...
The saturation of the near surface layers of metals with different elements is a powerful tool to ch...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
Surface and coatings technology : 13th International Conference on surface modification of materials...
The near surface structure and nitrogen concentration of the low-temperature low-pressure ion-nitrid...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
In this paper we report nitriding studies of stainless steel 316 using a broad ion beam source. Expe...
The effect of flux and Ar pretreatment during ion-beam nitriding of austenitic stainless steel is in...
Austenitic stainless steels cannot be conventionally nitrided at temperatures near 550 degrees C due...
The magnetic properties and crystalline structure of expanded austenite obtained by ion beam nitridi...
The current study focuses on the characterization of the nitrided layer, formed in American Iron and...
Austenitic stainless steel single crystals ($Fe_{69}Cr_{16}Ni_{12}$) have been implanted with 30 ke ...
Austenitic stainless steels are the preferred materials for mechanical components in the food, oil a...
Ion nitriding of austenitic stainless steels induces formation of hard surface layers which maintain...
Article Number: 083531Polycrystalline and single crystalline [orientations (001) and (011)] AISI 316...
The saturation of the near surface layers of metals with different elements is a powerful tool to ch...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
Surface and coatings technology : 13th International Conference on surface modification of materials...
The near surface structure and nitrogen concentration of the low-temperature low-pressure ion-nitrid...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
In this paper we report nitriding studies of stainless steel 316 using a broad ion beam source. Expe...
The effect of flux and Ar pretreatment during ion-beam nitriding of austenitic stainless steel is in...
Austenitic stainless steels cannot be conventionally nitrided at temperatures near 550 degrees C due...
The magnetic properties and crystalline structure of expanded austenite obtained by ion beam nitridi...
The current study focuses on the characterization of the nitrided layer, formed in American Iron and...
Austenitic stainless steel single crystals ($Fe_{69}Cr_{16}Ni_{12}$) have been implanted with 30 ke ...
Austenitic stainless steels are the preferred materials for mechanical components in the food, oil a...
Ion nitriding of austenitic stainless steels induces formation of hard surface layers which maintain...