A high power pulsed DC glow discharge plasma (HPPGDP) system was employed to perform fast nitriding of AISI 316 austenitic stainless steel in Ar and N2 atmosphere. In-situ optical emission spectroscopy and Infrared pyrometer measurements were used during the plasma nitriding to investigate the effect of dynamic plasma on the nitriding behaviour. SEM and EDX, XRD, Knoop indentation, and tribo-tests were used to characterise microstructures and properties of the nitrided austenitic stainless steel samples. HPPGDP produced high ionization of both Ar and N2 in the plasma that corresponded to dense ion bombardment on the biased steel samples to induce effective plasma surface heating and to form high nitrogen concentration on the biased steel su...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitic stainless steel SUS 316L was nitrided by active-screen plasma nitriding (ASPN) to investi...
Direct current (DC) glow discharge plasma nitriding was carried out on three selected surface-roughe...
A high power pulsed DC glow discharge plasma (HPPGDP) system was employed to perform fast nitriding ...
A nitriding process based on two distinct nitrogen glow discharge modes, with sample temperatures ra...
Plasma nitriding of austenitic stainless steel is of high technological importance due to its abilit...
In this paper, we report on a series of experiments designed to study the influence of plasma nitrid...
The article presents the results of the research on the nitriding process of 316L austenitic steel a...
The effectiveness of the austenitic stainless steel nitriding can be significantly increased using a...
Expanded austenite (Gamma-N), or S-phase, is a special phase of low-temperature nitrided austenite c...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
The study examined layers were formed on the outer surface of austenitic stainless steel 304 under g...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
It is well understood that the introduction of nitrogen into metallic surfaces improves the mechanic...
High chromium content is responsible for the formation of a protective passive surface layer on aust...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitic stainless steel SUS 316L was nitrided by active-screen plasma nitriding (ASPN) to investi...
Direct current (DC) glow discharge plasma nitriding was carried out on three selected surface-roughe...
A high power pulsed DC glow discharge plasma (HPPGDP) system was employed to perform fast nitriding ...
A nitriding process based on two distinct nitrogen glow discharge modes, with sample temperatures ra...
Plasma nitriding of austenitic stainless steel is of high technological importance due to its abilit...
In this paper, we report on a series of experiments designed to study the influence of plasma nitrid...
The article presents the results of the research on the nitriding process of 316L austenitic steel a...
The effectiveness of the austenitic stainless steel nitriding can be significantly increased using a...
Expanded austenite (Gamma-N), or S-phase, is a special phase of low-temperature nitrided austenite c...
Recent work on austenitic stainless steels has indicated that low energy, high current density nitro...
The study examined layers were formed on the outer surface of austenitic stainless steel 304 under g...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
It is well understood that the introduction of nitrogen into metallic surfaces improves the mechanic...
High chromium content is responsible for the formation of a protective passive surface layer on aust...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitic stainless steel SUS 316L was nitrided by active-screen plasma nitriding (ASPN) to investi...
Direct current (DC) glow discharge plasma nitriding was carried out on three selected surface-roughe...