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  • Convenient structure adjustment and thereby the achievement of suitable material and technological properties is one of the very important areas of technological as well as material research. To find suitable technological conditions, it is possible to use various kinds of modelling processes. One of them is the utilization of thermomechanical simulators, which allow simulating the conditions of the real processes with sufficient accuracy. It is then possible to perform the optimisation on smaller specimens. This method was used for the optimisation of an unconventional technological process for selected alloying strategies of low-alloyed multiphase steels. These strategies are supposed to be applied in technologies, which combine anisothermal forming and thermomechanical treatment with intensive plastic deformation. Incremental deformations allow to reach a high amount of deformation and it is possible to obtain structures with very fine grain by a suitable choice of temperature.
  • Convenient structure adjustment and thereby the achievement of suitable material and technological properties is one of the very important areas of technological as well as material research. To find suitable technological conditions, it is possible to use various kinds of modelling processes. One of them is the utilization of thermomechanical simulators, which allow simulating the conditions of the real processes with sufficient accuracy. It is then possible to perform the optimisation on smaller specimens. This method was used for the optimisation of an unconventional technological process for selected alloying strategies of low-alloyed multiphase steels. These strategies are supposed to be applied in technologies, which combine anisothermal forming and thermomechanical treatment with intensive plastic deformation. Incremental deformations allow to reach a high amount of deformation and it is possible to obtain structures with very fine grain by a suitable choice of temperature. (en)
  • Vhodné nastavení struktury, a tím získání vhodných materiálových i technologických vlastností je jednou z velmi důležitých oblastí technologického i materiálového výzkumu. Pro nalezení vhodných technologických podmínek lze použít různé druhy modelových postupů. Jedním z nich je využití termomechanických simulátorů, které mohou s dostatečnou přesností napodobit podmínky reálného procesu. Tím lze provádět optimalizaci na menších zkušebních tělesech s přesnějším monitorováním skutečných podmínek. Takovýto postup byl použit pro optimalizaci nekonvenčního technologického postupu pro vybrané legovací strategie nízkouhlíkových vícefázov (cs)
Title
  • Physical modelling of microstucture development during technological procesess with intensive incremental deformation
  • Fyzikální modelování vývoje mikrostruktury během technologických procesů s intenzivními inkrementálními deformacemi (cs)
  • Physical modelling of microstucture development during technological procesess with intensive incremental deformation (en)
skos:prefLabel
  • Physical modelling of microstucture development during technological procesess with intensive incremental deformation
  • Fyzikální modelování vývoje mikrostruktury během technologických procesů s intenzivními inkrementálními deformacemi (cs)
  • Physical modelling of microstucture development during technological procesess with intensive incremental deformation (en)
skos:notation
  • RIV/49777513:23210/07:00000083!RIV08-MSM-23210___
http://linked.open.../vavai/riv/strany
  • 943
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  • P(1M06032)
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  • 0
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  • 441317
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  • RIV/49777513:23210/07:00000083
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  • physical modelling; incremental deformation (en)
http://linked.open.../riv/klicoveSlovo
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  • CH - Švýcarská konfederace
http://linked.open...ontrolniKodProRIV
  • [1349F5C13369]
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  • Key Engineering Materials
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http://linked.open...iv/tvurceVysledku
  • Mašek, Bohuslav
  • Staňková, Hana
  • Malina, Jiří
  • Skálová, Ludmila
  • Meyer, L. W.
issn
  • 1013-9826
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http://localhost/t...ganizacniJednotka
  • 23210
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