Austenitic Stainless Steel (ASS) has been used widely in industry because of its excellent corrosion properties. However, due to its inherent austenitic structure, it exhibits slightly low hardness and wear resistance. Thus, it limits its application. In this study, the ASS are treated with gas nitriding at temperature of 400°C and 1100°C to improve the surface mechanical properties. The study aims to improve the surface hardness and scratch resistance of ASS. The effect of the nitriding treatment time and nitriding temperature to improve the surface mechanical properties are investigated. The nitriding treatment time are conducted at 4 hours, 8 hours and 12 hours. Argon gas and Nitrogen gas are used for this treatment. The microstructure a...
The results concerning gas nitriding of sintered stainless steel are presented in the paper. The sam...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Austenitic stainless steel is the most commonly used material in the production of orthopedic prosth...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
Austenitic stainless steel 316L is exposed to gas nitriding at 400 °C, 600 °C, and 1100 °C with fixe...
In industries, components must operate under extreme conditions such as high load, speed, temperatur...
Austenitic stainless steel (ASS) makes up over 70% of total stainless steel production and has been ...
Abstract- Austenitic stainless steels have been widely used in highly corrosive environments for pow...
AISI 3161 stainless steel have been treated by surface hardening technique, which is low temperatur...
AISI 316L stainless steel have been treated by surface hardening technique, which is low temperature...
In this study the 316L austenitic stainless steel were tested with gas nitriding process. The time e...
High chromium content is responsible for the formation of a protective passive surface layer on aust...
Corrosion is one of the major problems in the industry especially on machinery since it weakens the ...
This study examined the microstructure and hardness of as-received and nitrided AISI 420 martensitic...
Stainless steel is a difficult material to nitride because a passive oxide film is present on its su...
The results concerning gas nitriding of sintered stainless steel are presented in the paper. The sam...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Austenitic stainless steel is the most commonly used material in the production of orthopedic prosth...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
Austenitic stainless steel 316L is exposed to gas nitriding at 400 °C, 600 °C, and 1100 °C with fixe...
In industries, components must operate under extreme conditions such as high load, speed, temperatur...
Austenitic stainless steel (ASS) makes up over 70% of total stainless steel production and has been ...
Abstract- Austenitic stainless steels have been widely used in highly corrosive environments for pow...
AISI 3161 stainless steel have been treated by surface hardening technique, which is low temperatur...
AISI 316L stainless steel have been treated by surface hardening technique, which is low temperature...
In this study the 316L austenitic stainless steel were tested with gas nitriding process. The time e...
High chromium content is responsible for the formation of a protective passive surface layer on aust...
Corrosion is one of the major problems in the industry especially on machinery since it weakens the ...
This study examined the microstructure and hardness of as-received and nitrided AISI 420 martensitic...
Stainless steel is a difficult material to nitride because a passive oxide film is present on its su...
The results concerning gas nitriding of sintered stainless steel are presented in the paper. The sam...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Austenitic stainless steel is the most commonly used material in the production of orthopedic prosth...