The paper discusses the comparison of pack carburizing-nitriding SUS 316 with gas Nitrogen. The purpose of this study was to increase the hardness and corrosion resistance of SUS 316. The research used a pack carburizing-nitriding method with gas type Welding Grade (WG) and Ultra High Purity (UHP). The pack carburizing process uses teak wood activated carbon and barium carbonate as a bio-photo catalyst. The specimens were put into a Sealed Steel Container containing teak wood activated carbon, with a depth of 1 cm below the activated carbon's surface. The test material is then heated until it reaches 850 °C and is held for 1 hour in a heating furnace. Furthermore, the nitriding process, the specimen is put into a tightly closed ni...
Gears for structural machine require high fatigue strength for high performance. Generally, gears ma...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
A group of steels used in bearing applications were subjected to three different heat treatments – g...
The paper discusses the comparison of pack carburizing-nitriding SUS 316 with gas Nitrogen. The purp...
This report presents an investigation on the effectiveness of nitrogen gas for surface nitriding of ...
Corrosion is one of the major problems in the industry especially on machinery since it weakens the ...
High temperature gas nitriding (HTGN) is the new methods to enhanced the properties of stainless ste...
In this study the 316L austenitic stainless steel were tested with gas nitriding process. The time e...
Carbon steels are the most extensively used materials throughout oil and gas industry especially for...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
The purpose of this project is to study on wear resistance of 316L Austenitic Stainless steel and ma...
Abstract. High temperature gas nitriding performed on AISI 316L at the temperature of 1200°C. The mi...
The addition of nitrogen to stainless steel improves mechanical and corrosion properties. Nitrogen-b...
Gears for structural machine require high fatigue strength for high performance. Generally, gears ma...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
A group of steels used in bearing applications were subjected to three different heat treatments – g...
The paper discusses the comparison of pack carburizing-nitriding SUS 316 with gas Nitrogen. The purp...
This report presents an investigation on the effectiveness of nitrogen gas for surface nitriding of ...
Corrosion is one of the major problems in the industry especially on machinery since it weakens the ...
High temperature gas nitriding (HTGN) is the new methods to enhanced the properties of stainless ste...
In this study the 316L austenitic stainless steel were tested with gas nitriding process. The time e...
Carbon steels are the most extensively used materials throughout oil and gas industry especially for...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
When AISI 316L stainless steels are submitted to the nitriding process at temperatures lower than 45...
High nitrogen stainless steels are being considered a new promising class of engineering materials. ...
The purpose of this project is to study on wear resistance of 316L Austenitic Stainless steel and ma...
Abstract. High temperature gas nitriding performed on AISI 316L at the temperature of 1200°C. The mi...
The addition of nitrogen to stainless steel improves mechanical and corrosion properties. Nitrogen-b...
Gears for structural machine require high fatigue strength for high performance. Generally, gears ma...
Stainless steel AISI 316L is widely used as biomaterial due to its high corrosion resistance. Howeve...
A group of steels used in bearing applications were subjected to three different heat treatments – g...