The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical properties of novel maraging steel was studied. This was achieved by looking at two different martensitic structures with PAG sizes of approximately 40 µm and 80 µm, produced by hot rolling to different reductions. Two ageing heat-treatments were considered: both heat-treatments consisted of austenisation at 960 °C, then aging at 560 °C for 5 h, but while one was rapidly cooled the other was slow cooled and then extended aged at 480 °C for 64 h. It is shown that for the shorter ageing treatment the smaller PAG size resulted in significant improvements in strength (increase of more than 150 MPa), ductility (four times increase), creep life (alm...
The microstruectures of Fe-Mn-Co and Fe-Mn-Co-Mo alloys in various conditions of heat treatment have...
This paper presents the results of a comprehensive study of precipitation hardened martensitic steel...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical p...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
The microstructural evolution in a set of Mn-based maraging steels (7–12 wt% Mn) when aged at 460–50...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
A new maraging steel, based on carbide precipitation, is described. Two alloys were designed namely ...
A physics–based modelling framework to describe microstructure and mechanical properties in maraging...
Microstructure and mechanical properties have been studied in CORRAX maraging steel during prolonged...
A novel ultra-high strength precipitation hardened martensitic steel with balanced ductility and cre...
ABSTRACT: Maraging steels have low carbon content and are highly alloyed, having as main feature the...
Maraging steel gains ultrahigh strength through aging; however, wire + arc additively manufactured m...
Maraging steels are ultra-high-strength steel alloys used in critical aerospace applications such as...
ABSTRACT: Maraging steels have low carbon content and are highly alloyed, having as main feature the...
The microstruectures of Fe-Mn-Co and Fe-Mn-Co-Mo alloys in various conditions of heat treatment have...
This paper presents the results of a comprehensive study of precipitation hardened martensitic steel...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical p...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
The microstructural evolution in a set of Mn-based maraging steels (7–12 wt% Mn) when aged at 460–50...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
A new maraging steel, based on carbide precipitation, is described. Two alloys were designed namely ...
A physics–based modelling framework to describe microstructure and mechanical properties in maraging...
Microstructure and mechanical properties have been studied in CORRAX maraging steel during prolonged...
A novel ultra-high strength precipitation hardened martensitic steel with balanced ductility and cre...
ABSTRACT: Maraging steels have low carbon content and are highly alloyed, having as main feature the...
Maraging steel gains ultrahigh strength through aging; however, wire + arc additively manufactured m...
Maraging steels are ultra-high-strength steel alloys used in critical aerospace applications such as...
ABSTRACT: Maraging steels have low carbon content and are highly alloyed, having as main feature the...
The microstruectures of Fe-Mn-Co and Fe-Mn-Co-Mo alloys in various conditions of heat treatment have...
This paper presents the results of a comprehensive study of precipitation hardened martensitic steel...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...