© 2016 The Authors. Although high carbon martensitic steels are well known for their industrial utility in high abrasion and extreme operating environments, due to their hardness and strength, the compressive stability of their retained austenite, and the implications for the steels' performance and potential uses, is not well understood. This article describes the first investigation at both the macro and nano scale of the compressive stability of retained austenite in high carbon martensitic steel. Using a combination of standard compression testing, X-ray diffraction, optical microstructure, electron backscattering diffraction imaging, electron probe micro-analysis, nano-indentation and micro-indentation measurements, we determined the m...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The effect of retained austenite stability on plastic deformation was investigated by stepwise tensi...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
Low alloyed High carbon steels with duplex (DHCS)s structure of martensite and retained austenite (R...
Understanding the effect of high strain rate deformation on microstructure and mechanical property o...
High carbon multiphase steels have attracted a lot of interest in industrial applications due to the...
electron microscopy, mechanical properties. Abstract. Advances in the development of new high streng...
Quenching and Partitioning (Q&P) process permits to produce innovative microstructures containing la...
Abstract The residual compressive stresses and dimensional changes related to the lattice strains o...
Advances in the development of new high strength steels have resulted in microstructures containing ...
The transformation of the austenite to the martensite provides the transformation-induced plasticity...
Results of dynamic tensile testing of three-step low-temperature-transformed nanostructured bainitic...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
Although high carbon martensitic steels with dual phase, i.e. retained austenite and martensite, are...
Thermal stability of retained austenite in 1C-1.5Cr steels with two Si and Mn contents is studied. T...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The effect of retained austenite stability on plastic deformation was investigated by stepwise tensi...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
Low alloyed High carbon steels with duplex (DHCS)s structure of martensite and retained austenite (R...
Understanding the effect of high strain rate deformation on microstructure and mechanical property o...
High carbon multiphase steels have attracted a lot of interest in industrial applications due to the...
electron microscopy, mechanical properties. Abstract. Advances in the development of new high streng...
Quenching and Partitioning (Q&P) process permits to produce innovative microstructures containing la...
Abstract The residual compressive stresses and dimensional changes related to the lattice strains o...
Advances in the development of new high strength steels have resulted in microstructures containing ...
The transformation of the austenite to the martensite provides the transformation-induced plasticity...
Results of dynamic tensile testing of three-step low-temperature-transformed nanostructured bainitic...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
Although high carbon martensitic steels with dual phase, i.e. retained austenite and martensite, are...
Thermal stability of retained austenite in 1C-1.5Cr steels with two Si and Mn contents is studied. T...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The effect of retained austenite stability on plastic deformation was investigated by stepwise tensi...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...