We report on the changes on the microstructural, hardness, and corrosion properties induced by carbo-chromization of 316L stainless steel prepared by Spark Plasma Sintering technique. The thermo-chemical treatments have been performed using pack cementation. The carburizing and chromization were carried out between 1153 K (880 A degrees C)/4 h to 1253 K (980 A degrees C)/12 h and 1223 K (950 A degrees C)/6 h to 1273 K (1000 A degrees C)/12 h in a solid powder mixture of charcoal/BaCO3 and ferrochromium/alumina/NH4Cl, respectively. The obtained layers were investigated using X-ray and electron diffraction, optical and scanning electron microscopies, Vickers micro-hardness, and potentiodynamic measurements. The thickness of the carbo-chromize...
This paper compares the surface morphology of differently finished austenitic stainless steel AISI 3...
The effect of a low temperature carburizing (LTC) treatment on both the corrosion and dry sliding tr...
none4noLow temperature carburising (LTC) is a thermochemical treatment designed so as to achieve a g...
Abstract The effect of low oxygen-partial pressured carburizing on relaxation process for 316L stain...
In this research work, low-temperature carburizing of AISI 420 martensitic stainless steel was condu...
International audienceIn this work, 316L samples with submicrometric grain size were sintered by spa...
Austenitic stainless steels are characterized by good corrosion resistance in different environments...
To improve the protective performance of 316L stainless steel surface in seawater, a series of modif...
International audienceA micrometric austenitic stainless steel 316L powder was densified by spark pl...
Low temperature plasma carburizing treatment of austenitic stainless steels is a carbon surface diff...
AISI 316L austenitic stainless steel is widely used in industrial applications, usually in contact w...
Carbon layers thanks to their advantages (high biocompatibility, good wear resistance, high corrosio...
[[abstract]]Chromization process is a method for developing a surface coating providing hardness, we...
Austenitic stainless steels cannot be conventionally surface treated at temperatures close to 550 de...
This paper compares the surface morphology of differently finished austenitic stainless steel AISI 3...
The effect of a low temperature carburizing (LTC) treatment on both the corrosion and dry sliding tr...
none4noLow temperature carburising (LTC) is a thermochemical treatment designed so as to achieve a g...
Abstract The effect of low oxygen-partial pressured carburizing on relaxation process for 316L stain...
In this research work, low-temperature carburizing of AISI 420 martensitic stainless steel was condu...
International audienceIn this work, 316L samples with submicrometric grain size were sintered by spa...
Austenitic stainless steels are characterized by good corrosion resistance in different environments...
To improve the protective performance of 316L stainless steel surface in seawater, a series of modif...
International audienceA micrometric austenitic stainless steel 316L powder was densified by spark pl...
Low temperature plasma carburizing treatment of austenitic stainless steels is a carbon surface diff...
AISI 316L austenitic stainless steel is widely used in industrial applications, usually in contact w...
Carbon layers thanks to their advantages (high biocompatibility, good wear resistance, high corrosio...
[[abstract]]Chromization process is a method for developing a surface coating providing hardness, we...
Austenitic stainless steels cannot be conventionally surface treated at temperatures close to 550 de...
This paper compares the surface morphology of differently finished austenitic stainless steel AISI 3...
The effect of a low temperature carburizing (LTC) treatment on both the corrosion and dry sliding tr...
none4noLow temperature carburising (LTC) is a thermochemical treatment designed so as to achieve a g...