Nanocrystalline bainite, commonly known as “superbainite”, is a novel class of steel that utilises careful alloy design to reduce the bainite transformation temperature to below 300℃. This results in grains that are tens of nanometres in width, which make steel strong and tough. The structure can be produced in large volumes without the need for rapid cooling or severe deformation. The presence of austenite in nanocrystalline bainite is largely responsible for the toughness. Unfortunately, the austenite is metastable and previous work has shown that it decomposes into cementite and ferrite upon heating. This decomposition makes the material weak and brittle. The present work aims to develop new alloys that form nanocrystalline bainite, but ...
Nano-bainitic steels represent a new class of alloys, whose microstructure consists of nanostructure...
Nanostructured bainite is a novel ultra-high-strength steel-concept under intensive current research...
The aim of the study was to investigate the thermal stability of the nanostructure produced in X37Cr...
Two novel nanocrystalline steels were designed to withstand elevated temperatures without catastroph...
The deformation behaviour of two nanostructured bainitic steels designed specically to ensure the th...
The thermal stability of nanobainitic structures obtained by heat treating two different high-carbon...
Two novel, thermally stable bulk nanocrystalline bainitic steels were subjected to a range of mechan...
Excellent mechanical properties of nanostructured bainitic steels are primarily related to the ultra...
We report an attempt at increasing the thermal stability of nanocrystalline bainite to tempering hea...
The purpose of the present work was to characterise and further develop a novel nanostructured type ...
Nanostructured bainite was obtained in high-carbon Si-Al-rich steel by low-temperature (220–260 °C) ...
Nanocrystalline materials are structurally characterised by a large density of grain boundaries whic...
A nanostructured steel has been produced using a clean steel-making technique. The mechanical proper...
The thermal stability of nanostructured microstructures consisting of a mixture of bainitic ferrite ...
There are major difficulties in creating novel nanocrystalline structures that have a combination of...
Nano-bainitic steels represent a new class of alloys, whose microstructure consists of nanostructure...
Nanostructured bainite is a novel ultra-high-strength steel-concept under intensive current research...
The aim of the study was to investigate the thermal stability of the nanostructure produced in X37Cr...
Two novel nanocrystalline steels were designed to withstand elevated temperatures without catastroph...
The deformation behaviour of two nanostructured bainitic steels designed specically to ensure the th...
The thermal stability of nanobainitic structures obtained by heat treating two different high-carbon...
Two novel, thermally stable bulk nanocrystalline bainitic steels were subjected to a range of mechan...
Excellent mechanical properties of nanostructured bainitic steels are primarily related to the ultra...
We report an attempt at increasing the thermal stability of nanocrystalline bainite to tempering hea...
The purpose of the present work was to characterise and further develop a novel nanostructured type ...
Nanostructured bainite was obtained in high-carbon Si-Al-rich steel by low-temperature (220–260 °C) ...
Nanocrystalline materials are structurally characterised by a large density of grain boundaries whic...
A nanostructured steel has been produced using a clean steel-making technique. The mechanical proper...
The thermal stability of nanostructured microstructures consisting of a mixture of bainitic ferrite ...
There are major difficulties in creating novel nanocrystalline structures that have a combination of...
Nano-bainitic steels represent a new class of alloys, whose microstructure consists of nanostructure...
Nanostructured bainite is a novel ultra-high-strength steel-concept under intensive current research...
The aim of the study was to investigate the thermal stability of the nanostructure produced in X37Cr...