The quenching and partitioning (Q&P) process is a new heat treatment for the creation of advanced high-strength steels. This treatment consists of an initial partial or full austenitization, followed by a quench to form a controlled amount of martensite and an annealing step to partition carbon atoms from the martensite to the austenite. In this work, the microstructural evolution during annealing of martensite-austenite grain assemblies has been analyzed by means of a modeling approach that considers the influence of martensite-austenite interface migration on the kinetics of carbon partitioning. Carbide precipitation is precluded in the model, and three different assumptions about interface mobility are considered, ranging from a comp...
AbstractThe Quenching and Partitioning (Q&P) process starts with an austenitization process foll...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
Austenite was stabilized in the martensitic stainless steel grade AISI 420 by means of quenching and...
The application of the quenching and partitioning (Q&P) process in steels involves a microstructural...
The microstructural evolution of martensite in as-quenched and quenched and tempered Fe-0.15C-0.215S...
The effect of temperature (350 ◦C < M < 450 ◦C) on the partitioning mechanisms and the final microst...
The application of the quenching and partitioning (Q-P) process on advanced high-strength steels imp...
The Quenching and Partitioning (Q&P) heat treatment has been proposed in the early 2000s to produce ...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
An attempt has been made to estimate the amount and composition of different phases formed during th...
In the present work, Quenching and Partitioning (Q&P) heat treatments were carried out in a quench d...
In the present study the microstructural evolution and kinetics of carbon redistribution during the ...
International audienceQ&P annealing was applied to cold rolled carbon-manganese steel with Si. Q&P c...
The influence of the prior austenite grain size (PAGS), varying between 6 and 185 μm, on the microst...
In this study, we used 0.2C-1.7Si-1.9Mn wt% cold-rolled sheet as the experimental material to prepar...
AbstractThe Quenching and Partitioning (Q&P) process starts with an austenitization process foll...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
Austenite was stabilized in the martensitic stainless steel grade AISI 420 by means of quenching and...
The application of the quenching and partitioning (Q&P) process in steels involves a microstructural...
The microstructural evolution of martensite in as-quenched and quenched and tempered Fe-0.15C-0.215S...
The effect of temperature (350 ◦C < M < 450 ◦C) on the partitioning mechanisms and the final microst...
The application of the quenching and partitioning (Q-P) process on advanced high-strength steels imp...
The Quenching and Partitioning (Q&P) heat treatment has been proposed in the early 2000s to produce ...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
An attempt has been made to estimate the amount and composition of different phases formed during th...
In the present work, Quenching and Partitioning (Q&P) heat treatments were carried out in a quench d...
In the present study the microstructural evolution and kinetics of carbon redistribution during the ...
International audienceQ&P annealing was applied to cold rolled carbon-manganese steel with Si. Q&P c...
The influence of the prior austenite grain size (PAGS), varying between 6 and 185 μm, on the microst...
In this study, we used 0.2C-1.7Si-1.9Mn wt% cold-rolled sheet as the experimental material to prepar...
AbstractThe Quenching and Partitioning (Q&P) process starts with an austenitization process foll...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
Austenite was stabilized in the martensitic stainless steel grade AISI 420 by means of quenching and...