Advances in the development of new high strength steels have resulted in microstructures containing significant volume fractions of retained austenite. The transformation of retained austenite to martensite upon straining contributes towards improving the ductility. However, in order to gain from the above beneficial effect, the volume fraction, size, morphology and distribution of the retained austenite need to be controlled. In this regard, it is well known that carbon concentration in the retained austenite is responsible for its chemical stability, whereas its size and morphology determines its mechanical stability. Thus, to achieve the required mechanical properties, control of the processing parameters affecting the microstructure dev...
The results of investigations on the influence of stresses on the retained austenite volume fraction...
In many commercial steel processing routes, steel microstructures are reverted to an austenitic cond...
High carbon steels with dual phase structure of martensite and metastable austenite are strong, hard...
electron microscopy, mechanical properties. Abstract. Advances in the development of new high streng...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
High carbon multiphase steels have attracted a lot of interest in industrial applications due to the...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
© 2016 The Authors. Although high carbon martensitic steels are well known for their industrial util...
The drive for ever more safety and fuel efficiency in the automotive industry led the industry to se...
The mechanical stability of dispersed retained austenite, i.e., the resistance of this austenite to ...
The processes leading to the retention of small quantities of austenite following the bainite and ma...
Recent advances in the development of high performance steels presenting higher properties of streng...
The deformation-induced phase transformation of metastable austenite to martensite is accompanied by...
The deformation-induced phase transformation of metastable austenite to martensite is accompanied by...
Thermal stability of retained austenite in 1C-1.5Cr steels with two Si and Mn contents is studied. T...
The results of investigations on the influence of stresses on the retained austenite volume fraction...
In many commercial steel processing routes, steel microstructures are reverted to an austenitic cond...
High carbon steels with dual phase structure of martensite and metastable austenite are strong, hard...
electron microscopy, mechanical properties. Abstract. Advances in the development of new high streng...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
High carbon multiphase steels have attracted a lot of interest in industrial applications due to the...
The mechanical and thermal stability of austenite in multiphase advanced high strength steels are in...
© 2016 The Authors. Although high carbon martensitic steels are well known for their industrial util...
The drive for ever more safety and fuel efficiency in the automotive industry led the industry to se...
The mechanical stability of dispersed retained austenite, i.e., the resistance of this austenite to ...
The processes leading to the retention of small quantities of austenite following the bainite and ma...
Recent advances in the development of high performance steels presenting higher properties of streng...
The deformation-induced phase transformation of metastable austenite to martensite is accompanied by...
The deformation-induced phase transformation of metastable austenite to martensite is accompanied by...
Thermal stability of retained austenite in 1C-1.5Cr steels with two Si and Mn contents is studied. T...
The results of investigations on the influence of stresses on the retained austenite volume fraction...
In many commercial steel processing routes, steel microstructures are reverted to an austenitic cond...
High carbon steels with dual phase structure of martensite and metastable austenite are strong, hard...