In this paper, we report on a series of experiments designed to study the influence of plasma nitriding on the mechanical properties of austenitic stainless steel. Plasma nitriding experiments were conducted on AISI 304L steel in a temperature range of 375-475°C using pulsed-DC plasma with different N2-H2 gas mixtures and treatment times. Firstly the formation and the microstructure of the modified layer will be highlighted followed by the results of hardness measurement, adhesion testing, wear resistance and fatigue life tests. The modified surface was analyzed directly after plasma nitriding as well as using a depth profiling method. The microhardness after plasma nitriding is increased up to 19 GPa, that is a factor of five higher compar...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
Stainless steel is a difficult material to nitride because a passive oxide film is present on its su...
In this paper, we report on a series of experiments designed to study the influence of plasma nitrid...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
In order to enhance the plasma nitriding efficiency and improve the hardness and wear resistance of ...
Plasma nitriding is a method of surface modification using a glow discharge technology to introduce ...
Plasma nitriding is a method of surface modification using a glow discharge technology to introduce ...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitni nehrđajući čelici igraju važnu ulogu za različite industrije zbog svojih naprednih svojst...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
Stainless steel is a difficult material to nitride because a passive oxide film is present on its su...
In this paper, we report on a series of experiments designed to study the influence of plasma nitrid...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
AISI 304 stainless steel is a type of austenitic stainless steel that contains a high percentage of ...
In order to enhance the plasma nitriding efficiency and improve the hardness and wear resistance of ...
Plasma nitriding is a method of surface modification using a glow discharge technology to introduce ...
Plasma nitriding is a method of surface modification using a glow discharge technology to introduce ...
Plasma nitriding is generally used to harden surfaces and thus to improve their wear resistance. How...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitni nehrđajući čelici igraju važnu ulogu za različite industrije zbog svojih naprednih svojst...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
In industry, mechanical components must operate under conditions conditions such as variable load, s...
Stainless steel is a difficult material to nitride because a passive oxide film is present on its su...