The deformation characteristics of stainless steel type AISI 3O4 under compression in the temperature range 20 degrees C to 600 degrees C and strain-rate range 0.001 to 100 s(-1) have been studied with a view to characterizing the flow instabilities occurring in the microstructure. At strain rates less than 5 s(-1), 304 stainless steel exhibits flow localization, whereas dynamic strain aging occurs at intermediate temperatures and below 0.5 s(-1). At room temperatures and strain rates less than 10 s(-1), martensite formation is observed. To avoid the preceding microstructural instabilities, cold and warm working should be carried out at strain rates greater than 5 s(-1). The continuum criterion, developed on the basis of the principles of m...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
The hot-working behaviour of commercial grade wrought stainless steel type AISI 304 is characterized...
Most of industrial hot deformation processes are performed in variable conditions where the strain r...
The deformation characteristics of stainless steel type AISI 3O4 under compression in the temperatur...
The deformation characteristics of as-cast 304 stainless steel under compression in the temperature ...
The deformation characteristics of as-cast 304 stainless steel under compression in the temperature ...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of 304L stainless steel in compression in the temperature range 20–7...
The deformation characteristics of 304L stainless steel in compression in the temperature range 20–7...
A processing map for stainless steel of type AISI 304 L has been developed in the temperature range ...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
The hot working behavior of 304L stainless steel is characterized using processing maps developed on...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
The hot-working behaviour of commercial grade wrought stainless steel type AISI 304 is characterized...
Most of industrial hot deformation processes are performed in variable conditions where the strain r...
The deformation characteristics of stainless steel type AISI 3O4 under compression in the temperatur...
The deformation characteristics of as-cast 304 stainless steel under compression in the temperature ...
The deformation characteristics of as-cast 304 stainless steel under compression in the temperature ...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of stainless steel type AISI 316L under compression in the temperatu...
The deformation characteristics of 304L stainless steel in compression in the temperature range 20–7...
The deformation characteristics of 304L stainless steel in compression in the temperature range 20–7...
A processing map for stainless steel of type AISI 304 L has been developed in the temperature range ...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
The hot working behavior of 304L stainless steel is characterized using processing maps developed on...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
Processing maps for hot working of stainless steel of type AISI 304L have been developed on the basi...
The hot-working behaviour of commercial grade wrought stainless steel type AISI 304 is characterized...
Most of industrial hot deformation processes are performed in variable conditions where the strain r...