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  • Technische Universität Dresden
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  • Bereich Ingenieurwissenschaften
  • Fakultät Maschinenwesen
  • Institut für Fertigungstechnik
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  • Material and failure characteristics for high-speed forming and cutting processes
  • Experimental data and FE-model for tensile tests of DC06 at high strain rates
  • Datenpaketanzeige
  •   Startseite
  • Technische Universität Dresden
  • Bereiche
  • Bereich Ingenieurwissenschaften
  • Fakultät Maschinenwesen
  • Institut für Fertigungstechnik
  • Professur für Formgebende Fertigungsverfahren
  • Material and failure characteristics for high-speed forming and cutting processes
  • Experimental data and FE-model for tensile tests of DC06 at high strain rates
  • Datenpaketanzeige
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Forming at high strain rates Part 2: Analysis of adiabatic heating based on tensile tests of DC06Open Access Icon

Thumbnail
Experimental setup (9.259Mb)
Experimental and numerical temperature development for different strain rates (1.251Mb)
Experimental maximum value of temperature in fracture zone (772.4Kb)
Fracture behaviour at different strain rates (7.869Mb)
Force-displacement curve for strain rate = 0.1 1/s (49.02Kb)
Force-displacement curve for strain rate = 50 1/s (50.33Kb)
Maximum temperature in the fracture zone for different strain rates (169Bytes)
FE-model of test specimen (5.927Mb)
data-license.txt (CC-BY-NC-SA-4.0) (14.69Kb)
Datum
2023
Autor
Tulke, Marc
Galiev, Elmar
Metadaten
Zur Langanzeige
Zusammenfassung
In high strain rate forming processes two superposing and opposing effects influence the flow stress of the material: strain rate hardening and thermal softening due to adiabatic heating. The presented FE-model and experimental results are based on https://doi.org/10.3390/app12052299 where uniaxial tensile tests at different high strain rates are analyzed experimentally and numerically to understand the influence of adiabatic heating of the workpiece during deformation under high-speed loading. A thermal camera and a pyrometer were used for temperature measurement in the fracture region in addition to the measurement of force and elongation. The numerical simulations are carried out in LS-Dyna using the GISSMO model for modeling damage and failure. The used inverse parameter identification is first presented in https://doi.org/10.3390/jmmp4020031 and the associated data is published in http://dx.doi.org/10.25532/OPARA-246.
URI
https://opara.zih.tu-dresden.de/xmlui/handle/123456789/5983
http://dx.doi.org/10.25532/OPARA-249
Sammlungen
  • Experimental data and FE-model for tensile tests of DC06 at high strain rates [1]Open Access Icon

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