A series of medium-carbon low alloy steels was quenched to martensite and tempered at 150 C. This low-temperature-tempered (LTT) martensite was subjected to uniaxial tensile and impact testing. Yield and ultimate tensile strength and uniform elongation increased, and post uniform and total elongation and fracture toughness decreased, with increasing carbon concentration. The carbon dependence of the mechanical properties is attributed to the dislocation/transition carbide substructure of the LTT martensite. As carbon content increases, the density of the transition carbide arrays increases, and the rate of strain hardening increases, resulting in the noted property changes. The strain hardening mechanisms and questions remaining about the e...
Four commercial steels with carbon contents in the range 0.1-0.5 wt.% have been examined in the as-q...
Understanding the effect of high strain rate deformation on microstructure and mechanical property o...
The complex microstructure of ferrous martensite is reflected in its complex mechanical response. In...
A series of medium-carbon low alloy steels was quenched to martensite and tempered at 150 C. This lo...
Although martensite is recognised as a very strong phase in carbon steels, its initial yielding comm...
The influence of carbon distribution and carbide precipitation on the mechanical properties of the a...
The role of carbon in the strengthening mechanisms of martensitic steels has been studied for decade...
Martensite is a key constituent in advanced high strength steels (AHSS). The mechanical response of ...
The effect of test temperature, which controls the stability of austenite, on the impact toughness o...
A unified description for the hardness in martensitic steels for a wide range of carbon contents is ...
In industrial application, unintentional manufacturing line troubles often consequence in heating ra...
AbstractThis work presents the microstructural changes of a carbon steel during tempering at low tem...
We investigated the effects of solute carbon concentration on the mechanical properties of Fe-19Cr-8...
This project is about to study the effect of microstructure on plain strain fracture toughness of ca...
Martensite is generally known as a hard but brittle microstructure. This is only true for high carbo...
Four commercial steels with carbon contents in the range 0.1-0.5 wt.% have been examined in the as-q...
Understanding the effect of high strain rate deformation on microstructure and mechanical property o...
The complex microstructure of ferrous martensite is reflected in its complex mechanical response. In...
A series of medium-carbon low alloy steels was quenched to martensite and tempered at 150 C. This lo...
Although martensite is recognised as a very strong phase in carbon steels, its initial yielding comm...
The influence of carbon distribution and carbide precipitation on the mechanical properties of the a...
The role of carbon in the strengthening mechanisms of martensitic steels has been studied for decade...
Martensite is a key constituent in advanced high strength steels (AHSS). The mechanical response of ...
The effect of test temperature, which controls the stability of austenite, on the impact toughness o...
A unified description for the hardness in martensitic steels for a wide range of carbon contents is ...
In industrial application, unintentional manufacturing line troubles often consequence in heating ra...
AbstractThis work presents the microstructural changes of a carbon steel during tempering at low tem...
We investigated the effects of solute carbon concentration on the mechanical properties of Fe-19Cr-8...
This project is about to study the effect of microstructure on plain strain fracture toughness of ca...
Martensite is generally known as a hard but brittle microstructure. This is only true for high carbo...
Four commercial steels with carbon contents in the range 0.1-0.5 wt.% have been examined in the as-q...
Understanding the effect of high strain rate deformation on microstructure and mechanical property o...
The complex microstructure of ferrous martensite is reflected in its complex mechanical response. In...