Liquid nitrate is an important method used to improve mechanical properties. One of these properties is resistance to fatigue. The aim of this study was to improve the fatigue resistance of the stainless steel 316L. The rotational bending method was used with constant and variable stresses at different times of (1, 3, 5) hours and at (530, 630) C0. These tests were performed before and after nitration. The results showed that the depth of the nitride layer was (0.21, 0.33, 0.45) mm, increasing with time nitriding when the temperature was 530 C0. While the depth of this layer at a temperature of 630 C0 (0.26, 0.39,0.5) mm with increasing time. As a result of these processes, a layer of solid chromium nitrides and other phases of iron nitr...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
The ion nitriding behavior of AISI 316L austenite stainless steel was investigated at different nitr...
Abstract: Energetic nitrogen implantation into 316LN stainless steels or nickel-chromium alloys lead...
Among metallic biomaterials, AISI 316L has the cheapest price yet but the lowest mechanical properti...
AISI 316L stainless steel have been treated by surface hardening technique, which is low temperature...
The purpose of this project is to study on wear resistance of 316L Austenitic Stainless steel and ma...
AISI 3161 stainless steel have been treated by surface hardening technique, which is low temperatur...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitic stainless steel (ASS) makes up over 70% of total stainless steel production and has been ...
AbstractFatigue crack growth (FCG) tests were carried out at ambient temperature in air for 316 L (N...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
Ion nitriding has become a popular thermo-chemical surface treatment, which is being used to develop...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
Nitriding at low temperatures, 450-500 oC of austenic stainless steels lead to the obtaining of the ...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
The ion nitriding behavior of AISI 316L austenite stainless steel was investigated at different nitr...
Abstract: Energetic nitrogen implantation into 316LN stainless steels or nickel-chromium alloys lead...
Among metallic biomaterials, AISI 316L has the cheapest price yet but the lowest mechanical properti...
AISI 316L stainless steel have been treated by surface hardening technique, which is low temperature...
The purpose of this project is to study on wear resistance of 316L Austenitic Stainless steel and ma...
AISI 3161 stainless steel have been treated by surface hardening technique, which is low temperatur...
Stainless steels, particularly the austenitic stainless grades are widely used in many industries du...
Austenitic stainless steel (ASS) makes up over 70% of total stainless steel production and has been ...
AbstractFatigue crack growth (FCG) tests were carried out at ambient temperature in air for 316 L (N...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
Ion nitriding has become a popular thermo-chemical surface treatment, which is being used to develop...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
Nitriding at low temperatures, 450-500 oC of austenic stainless steels lead to the obtaining of the ...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
The ion nitriding behavior of AISI 316L austenite stainless steel was investigated at different nitr...
Abstract: Energetic nitrogen implantation into 316LN stainless steels or nickel-chromium alloys lead...