A physics–based modelling framework to describe microstructure and mechanical properties in maraging steels is presented. It is based on prescribing the hierarchical structure of the martensitic matrix, including dislocation density, and lath and high–angle grain boundary spacing. The evolution of lath–shaped reverted austenite is described using grain–boundary diffusion laws within a lath unit. The dislocation density provides the preferential nucleation sites for precipitation, whereas descriptions for particle nucleation, growth and coarsening evolution are identified for Ni3Ti, NiAl and its variants, and BCC–Cu clusters. These results are combined to describe the hardness at different ageing temperatures in several [Formula presented], ...
Evolution of microstructure in a 350 grade commercial maraging steel has been examined. In the earli...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
A general computational alloy design approach based on thermodynamic and physical metallurgical prin...
A physics–based modelling framework to describe microstructure and mechanical properties in maraging...
The concept of low lattice misfit and high-density of nanoscale precipitates obtained through soluti...
The concept of low lattice misfit and high-density of nanoscale precipitates obtained through soluti...
This thesis details work that was carried out to optimise the fracture toughness and thermal stabili...
Computational alloy design has been used to develop a new maraging steel system with low cost, using...
Computational alloy design has been used to develop a new maraging steel system with low cost, using...
The microstructural evolution in a set of Mn-based maraging steels (7–12 wt% Mn) when aged at 460–50...
The microstructural changes, precipitation reactions and the mechanical properties of rapidly solidi...
Die Mikrostruktur und das Ausscheidungsverhalten dreier Maraging-Stähle – Corrax sowie zwei Fe-Ni-Al...
The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical p...
AbstractThe composition characteristics of maraging stainless steels were studied in the present wor...
Maraging steels are ultra-high-strength steel alloys used in critical aerospace applications such as...
Evolution of microstructure in a 350 grade commercial maraging steel has been examined. In the earli...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
A general computational alloy design approach based on thermodynamic and physical metallurgical prin...
A physics–based modelling framework to describe microstructure and mechanical properties in maraging...
The concept of low lattice misfit and high-density of nanoscale precipitates obtained through soluti...
The concept of low lattice misfit and high-density of nanoscale precipitates obtained through soluti...
This thesis details work that was carried out to optimise the fracture toughness and thermal stabili...
Computational alloy design has been used to develop a new maraging steel system with low cost, using...
Computational alloy design has been used to develop a new maraging steel system with low cost, using...
The microstructural evolution in a set of Mn-based maraging steels (7–12 wt% Mn) when aged at 460–50...
The microstructural changes, precipitation reactions and the mechanical properties of rapidly solidi...
Die Mikrostruktur und das Ausscheidungsverhalten dreier Maraging-Stähle – Corrax sowie zwei Fe-Ni-Al...
The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical p...
AbstractThe composition characteristics of maraging stainless steels were studied in the present wor...
Maraging steels are ultra-high-strength steel alloys used in critical aerospace applications such as...
Evolution of microstructure in a 350 grade commercial maraging steel has been examined. In the earli...
Maraging steels gain many of their beneficial properties from heat treatments which induce the preci...
A general computational alloy design approach based on thermodynamic and physical metallurgical prin...