Lightweight advanced high strength steels (AHSS) with aluminum contents between 4 and 12 weight percent have been the subject of intense interest in the last decade because of an excellent combination of high strain rate toughness coupled with up to a 17% reduction in density. Fully austenitic cast steels with a nominal composition of Fe-30%Mn-9%Al-0.9%C are almost 15% less dense than quenched and tempered Cr-Mo steels (SAE 4130) with equivalent strengths and dynamic fracture toughness. This article serves as a review of the tensile and high-strain-rate fracture properties associated mainly with silicon additions to this base composition. In the solution-treated condition, cast steels have high work-hardening rates with elongations up to 64...
Multiphase transformation induced plasticity (TRIP)-assisted steels are a new generation of low allo...
High manganese and aluminum steels are derivations of Robert Hadfield’s original investigations of a...
The structure and mechanical properties of two 0.2 wt.% C TRIP-assisted steels (Transformation Induc...
Lightweight, age-hardenable steels in the Fe-Mn-Al-C system are currently being developed as an alte...
The dynamic fracture toughness of Cr and Mo steels with nickel contents of 0, 1.56, and 5.5 wt.% was...
Implementation of lightweight high manganese and aluminum steels for use in high energy absorbing ap...
High manganese lightweight steel alloys in the Fe-Mn-Al-C system are promising alternatives to quenc...
Age hardenable, castable, and lightweight Fe-Mn-Al-C steels are currently being developed and evalua...
This project links properties and performance in as-cast condition for advanced high strength steel ...
High manganese and aluminum steels are being considered as lightweight replacements for chromium-mol...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
The relationship between microstructure, heat treatment and room temperature fracture toughness has ...
Summary form only given, as follows. The authors' study concerns first the influence of 5%Al additio...
This study is concerned with the effects of alloying elements on fracture toughness in the transitio...
The objective of the research project named RoHard, is to increase the understanding of the interact...
Multiphase transformation induced plasticity (TRIP)-assisted steels are a new generation of low allo...
High manganese and aluminum steels are derivations of Robert Hadfield’s original investigations of a...
The structure and mechanical properties of two 0.2 wt.% C TRIP-assisted steels (Transformation Induc...
Lightweight, age-hardenable steels in the Fe-Mn-Al-C system are currently being developed as an alte...
The dynamic fracture toughness of Cr and Mo steels with nickel contents of 0, 1.56, and 5.5 wt.% was...
Implementation of lightweight high manganese and aluminum steels for use in high energy absorbing ap...
High manganese lightweight steel alloys in the Fe-Mn-Al-C system are promising alternatives to quenc...
Age hardenable, castable, and lightweight Fe-Mn-Al-C steels are currently being developed and evalua...
This project links properties and performance in as-cast condition for advanced high strength steel ...
High manganese and aluminum steels are being considered as lightweight replacements for chromium-mol...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
The relationship between microstructure, heat treatment and room temperature fracture toughness has ...
Summary form only given, as follows. The authors' study concerns first the influence of 5%Al additio...
This study is concerned with the effects of alloying elements on fracture toughness in the transitio...
The objective of the research project named RoHard, is to increase the understanding of the interact...
Multiphase transformation induced plasticity (TRIP)-assisted steels are a new generation of low allo...
High manganese and aluminum steels are derivations of Robert Hadfield’s original investigations of a...
The structure and mechanical properties of two 0.2 wt.% C TRIP-assisted steels (Transformation Induc...