Abstract
Samples of titanium-stabilized interstitial-free steel were coiled at 600 and 700 °C. The effect of the coiling temperature on the formation of textures and precipitates during coiling, cold rolling and recrystallization annealing was studied by means of neutron texture measurements, small angle neutron scattering analysis and transmission electron microscopy observations. Whereas coiling at the lower temperature resulted in an insufficient scavenging of carbon in solid solution, coiling at the higher temperature promoted scavenging of carbon in solid solution, and consequently the formation of a large number of precipitates. The large amount of carbon in solid solution caused the retardation of softening in the cold-rolled sample during annealing below 700 °C. Upon annealing above 700 °C the impact of the coiling temperature on grain size and precipitates was not observed. The samples coiled at different temperatures exhibited a nearly identical cold rolling texture. However, the cold-rolled sample having a large amount of carbon in solid solution displayed a weak recrystallization texture.
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Part of this work was supported by the HANARO Nuclear R & D Program of the Ministry of Science and Technology.
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© 2003 Carl Hanser Verlag, München
Artikel in diesem Heft
- Frontmatter
- Articles/Aufsätze
- Grain boundary diffusion and segregation of Ge in Cu: Radiotracer measurements in different kinetic regimes
- Thermal diffusivities of uniaxially cold-pressed Fe2Mo powders
- Dislocation structure and crystallite size distribution in plastically deformed Ti determined by X-ray peak profile analysis
- Modeling of texture evolution in copper under equal channel angular pressing
- Method for in situ texture investigation of recrystallization of Cu and Ti by high-energy synchrotron X-ray diffraction
- Contribution of dislocation substructures developed during cold rolling to the formation of rolling textures in Al–Mg alloys
- Controlled change in the plastic working conditions of metals in the plane state of strain
- Finite element analysis of the thermo-mechanical fatigue of DD8 single crystal nickel-based superalloy
- Factors influencing the extent of hydrogen-enhanced brittle cracking in a Cu-strengthened HSLA steel during monotonic loading
- Textures and precipitates in Ti-stabilized interstitial-free steel
- Coarsening kinetics of Cu particles in an Fe-1.5% Cu alloy
- Kinetics of the discontinuous precipitation of a liquid phase in Cu–In alloys
- Influence of homogenization on the processing map for hot working of as-cast Mg–2Zn–1Mn alloy
- Some characteristics of electrospark deposition
- Aktuelle Arbeiten in der Konstitution
- Notifications/Mitteilungen
- Personal/ Personelles
- DGM Events
Artikel in diesem Heft
- Frontmatter
- Articles/Aufsätze
- Grain boundary diffusion and segregation of Ge in Cu: Radiotracer measurements in different kinetic regimes
- Thermal diffusivities of uniaxially cold-pressed Fe2Mo powders
- Dislocation structure and crystallite size distribution in plastically deformed Ti determined by X-ray peak profile analysis
- Modeling of texture evolution in copper under equal channel angular pressing
- Method for in situ texture investigation of recrystallization of Cu and Ti by high-energy synchrotron X-ray diffraction
- Contribution of dislocation substructures developed during cold rolling to the formation of rolling textures in Al–Mg alloys
- Controlled change in the plastic working conditions of metals in the plane state of strain
- Finite element analysis of the thermo-mechanical fatigue of DD8 single crystal nickel-based superalloy
- Factors influencing the extent of hydrogen-enhanced brittle cracking in a Cu-strengthened HSLA steel during monotonic loading
- Textures and precipitates in Ti-stabilized interstitial-free steel
- Coarsening kinetics of Cu particles in an Fe-1.5% Cu alloy
- Kinetics of the discontinuous precipitation of a liquid phase in Cu–In alloys
- Influence of homogenization on the processing map for hot working of as-cast Mg–2Zn–1Mn alloy
- Some characteristics of electrospark deposition
- Aktuelle Arbeiten in der Konstitution
- Notifications/Mitteilungen
- Personal/ Personelles
- DGM Events