The precipitation and dissolution behavior of niobium carbo-nitrides is of particular interest for many technical applications. Niobium-microalloyed high strength low alloy (HSLA) steels are widely used in civil construction, automobile and line pipe applications. These steels rely on thermomechanical processing. In this context, coupled processes like thin slab casting and thermomechanical rolling of microalloyed steel grades require most precise information on the precipitation state at the individual processing steps. Reasonable equations for the solubility product at thermal equilibrium can be taken from literature but kinetics is largely unknown. Conventional X-ray technology is not able to detect small volume fractions below 0.1% of n...
High-resolution transmission electron microscopy and electron-energy loss spectroscopy have been use...
International audienceThe results reported in this paper give new information regarding the early st...
Two steels with a base composition of Fe-0.2C-0.8Mn-1.2Cr (wt%) but with different niobium (Nb) cont...
The precipitation and dissolution behavior of niobium carbo-nitrides is of particular interest for m...
A good combination of strength and toughness in HSLA steels can be achieved by the addition of micro...
Composition analysis of carbide and carbo-nitride precipitates was performed for two Nb-Ti microallo...
Precipitation of second phase particles is a key factor dominating the mechanical properties of high...
The thermomechanical processing of high strength low allow (HSLA) steels during low-temperature roug...
Solidification of Nb-microalloyed HSLA steels may result in the precipitation of niobium carbonitrid...
MasterThe precipitation kinetics of nitrides and carbides during the TSDR (Thin Slab cast and Direct...
In this paper, thermomechanical processing of niobium microalloyed steel was performed with the purp...
Composition of complex carbide and carbo-nitride precipitates in Ti-Nb micro-alloyed 80-ksi (0.06 wt...
The influence of the nickel content and cooling rate on niobium nitride precipitation in as-cast sta...
The microalloying with niobium (Nb) and titanium (Ti) is standardly applied in low carbon steel high...
The controlled, _ne-grained microstructure of thermomechanically processed Nb microalloyed linepipe ...
High-resolution transmission electron microscopy and electron-energy loss spectroscopy have been use...
International audienceThe results reported in this paper give new information regarding the early st...
Two steels with a base composition of Fe-0.2C-0.8Mn-1.2Cr (wt%) but with different niobium (Nb) cont...
The precipitation and dissolution behavior of niobium carbo-nitrides is of particular interest for m...
A good combination of strength and toughness in HSLA steels can be achieved by the addition of micro...
Composition analysis of carbide and carbo-nitride precipitates was performed for two Nb-Ti microallo...
Precipitation of second phase particles is a key factor dominating the mechanical properties of high...
The thermomechanical processing of high strength low allow (HSLA) steels during low-temperature roug...
Solidification of Nb-microalloyed HSLA steels may result in the precipitation of niobium carbonitrid...
MasterThe precipitation kinetics of nitrides and carbides during the TSDR (Thin Slab cast and Direct...
In this paper, thermomechanical processing of niobium microalloyed steel was performed with the purp...
Composition of complex carbide and carbo-nitride precipitates in Ti-Nb micro-alloyed 80-ksi (0.06 wt...
The influence of the nickel content and cooling rate on niobium nitride precipitation in as-cast sta...
The microalloying with niobium (Nb) and titanium (Ti) is standardly applied in low carbon steel high...
The controlled, _ne-grained microstructure of thermomechanically processed Nb microalloyed linepipe ...
High-resolution transmission electron microscopy and electron-energy loss spectroscopy have been use...
International audienceThe results reported in this paper give new information regarding the early st...
Two steels with a base composition of Fe-0.2C-0.8Mn-1.2Cr (wt%) but with different niobium (Nb) cont...