Superaustenitic stainless steels have become of growing interest in industrial and technological fields, but there is not a complete understanding on their fundamental properties and their performances. For this paper, AISI 904L superaustenitic samples were nitrided and carburized in order to study the expanded austenite stability under severe deuterium and helium ion bombardment. Surface treatments were conducted using pulsed plasma glow discharges in a low pressure atmosphere, and a dense plasma focus device was used to irradiate the samples. Characterization techniques used were focused ion beam/SEM, energy-dispersive X-ray spectroscopy, and grazing incidence X-ray diffraction. Our results showed in carburized samples lattice expansion g...
A nitriding process based on two distinct nitrogen glow discharge modes, with sample temperatures ra...
The S phase, known as expanded austenite, is formed on the surfaces of austenitic stainless steels t...
The superiority of superaustenitic stainless steel (SASS) lies in its good weldability and great res...
Superaustenitic stainless steels have become of growing interest in industrial and technological fie...
Superaustenitic stainless steels have become of growing interest in industrial and technological fie...
Expanded austenite can be generated on austenitic stainless steels either by ion carburizing or ion ...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
We present the results of a surface modification of AISI 316L stainless steel by surface irradiation...
AbstractThe expanded austenite γN can be produced in austenitic stainless steels by plasma nitriding...
We study the effect of ion-plasma surface nitriding on the phase composition, microstructure, surfac...
The effectiveness of the austenitic stainless steel nitriding can be significantly increased using a...
This thesis was focused on the surface modification with plasma discharge. Austenitic AISI 316L stai...
Samples of AISI 304 stainless steel were surface treated with plasma of continuous current, at diffe...
Article Number: 083531Polycrystalline and single crystalline [orientations (001) and (011)] AISI 316...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
A nitriding process based on two distinct nitrogen glow discharge modes, with sample temperatures ra...
The S phase, known as expanded austenite, is formed on the surfaces of austenitic stainless steels t...
The superiority of superaustenitic stainless steel (SASS) lies in its good weldability and great res...
Superaustenitic stainless steels have become of growing interest in industrial and technological fie...
Superaustenitic stainless steels have become of growing interest in industrial and technological fie...
Expanded austenite can be generated on austenitic stainless steels either by ion carburizing or ion ...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
We present the results of a surface modification of AISI 316L stainless steel by surface irradiation...
AbstractThe expanded austenite γN can be produced in austenitic stainless steels by plasma nitriding...
We study the effect of ion-plasma surface nitriding on the phase composition, microstructure, surfac...
The effectiveness of the austenitic stainless steel nitriding can be significantly increased using a...
This thesis was focused on the surface modification with plasma discharge. Austenitic AISI 316L stai...
Samples of AISI 304 stainless steel were surface treated with plasma of continuous current, at diffe...
Article Number: 083531Polycrystalline and single crystalline [orientations (001) and (011)] AISI 316...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
A nitriding process based on two distinct nitrogen glow discharge modes, with sample temperatures ra...
The S phase, known as expanded austenite, is formed on the surfaces of austenitic stainless steels t...
The superiority of superaustenitic stainless steel (SASS) lies in its good weldability and great res...