To study the effects of various types of precipitates and precipitate evolution behavior on austenite (size and phase fraction) in reduced activation ferritic/martensitic (RAFM) steel, RAFM steel was heated to various austenitizing temperatures. The microstructures of specimens were observed using optical microscopy (OM) and transmission electron microscopy (TEM). The results indicate that the M23C6 and MX precipitates gradually coarsen and dissolve into the matrix as the austenitizing temperatures increase. The M23C6 precipitates dissolve completely at 1100 °C, while the MX precipitates dissolve completely at 1200 °C. The evolution of two types of precipitate has a significant effect on the size of austenite. Based on the Zener pinning mod...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
A type of low-carbon reduced activation ferritic/martensitic (RAFM) steel is designed.The microstruc...
To study the effects of various types of precipitates and precipitate evolution behavior on austenit...
<p></p><p>ABSTRACT Quenched and tempered 9%Cr grade 91 steels (9Cr1MoNbVN) display a lath martensiti...
During this study, the correlation between the evolution of the prior austenitic grain size and of t...
The effects of fine precipitates on the austenite grain refinement of micro-alloyed steel during cyc...
The effects of fine precipitates on the austenite grain refinement of micro-alloyed steel during cyc...
The M23C6 precipitate plays a major role in preventing the sliding of the grain boundary and strengt...
The present study investigates the morphological evolution of carbonitrides and the effect of these ...
Precipitate coarsening and grain growth are ubiquitous in austenite and its decomposition products. ...
International audienceAbnormal grain growth (AGG) in austenitic state is studied in low alloy steel ...
During this study, the correlation between the evolution of the prior austenitic grain size and of t...
51CrV4 spring steel is a martensitic steel grade that is heat treated by quenching and tempering. Th...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
A type of low-carbon reduced activation ferritic/martensitic (RAFM) steel is designed.The microstruc...
To study the effects of various types of precipitates and precipitate evolution behavior on austenit...
<p></p><p>ABSTRACT Quenched and tempered 9%Cr grade 91 steels (9Cr1MoNbVN) display a lath martensiti...
During this study, the correlation between the evolution of the prior austenitic grain size and of t...
The effects of fine precipitates on the austenite grain refinement of micro-alloyed steel during cyc...
The effects of fine precipitates on the austenite grain refinement of micro-alloyed steel during cyc...
The M23C6 precipitate plays a major role in preventing the sliding of the grain boundary and strengt...
The present study investigates the morphological evolution of carbonitrides and the effect of these ...
Precipitate coarsening and grain growth are ubiquitous in austenite and its decomposition products. ...
International audienceAbnormal grain growth (AGG) in austenitic state is studied in low alloy steel ...
During this study, the correlation between the evolution of the prior austenitic grain size and of t...
51CrV4 spring steel is a martensitic steel grade that is heat treated by quenching and tempering. Th...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
A type of low-carbon reduced activation ferritic/martensitic (RAFM) steel is designed.The microstruc...