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Other contributing persons, institutions or organisationsdfg - Funder
Other contributing persons, institutions or organisationsBrosius, Alexander - TUD (orcid: 0000-0002-9941-390X) - ProjectLeader
Other contributing persons, institutions or organisationsPsyk, Verena - IWU (ORCID: 0000-0001-6737-9199) - ProjectLeader
Person(s) who is (are) responsible for the content of the research dataTulke, Marc - TUD (ORCID: 0000-0001-9798-8358)
Person(s) who is (are) responsible for the content of the research dataGaliev, Elmar - IWU
AbstractBased on the material properties determined in "Forming and cutting at high strain rates Part 1" and "Part 2", the applicability of the methodology and the material characteristics are verified using a deep drawing process with strain rates up to 100 1/s. This data collection includes the material and failure characteristics of the deep drawing steel DC06 at high strain rates and a FE-model for deep drawing at high velocities. The numerical model as well as experimental and numerical results are first presented in doi.org/10.1088/1757-899X/1238/1/012047.
Year or period of data production2021-2023
Publication year2023
PublisherTechnische Universität Dresden
PublisherFraunhofer Institute for Machine Tools and Forming Technology IWU
References on related materialsIsPartOf: 123456789/5810 (Handle)
References on related materialsCites: doi.org/10.1088/1757-899X/1238/1/012047 (DOI)
References on related materialsCites: http://dx.doi.org/10.25532/OPARA-249 (DOI)
Content of the research dataModel: FE-model and experimental data (punch velocity, punch displacement, punch force) of deep drawing process
Holder of usage rightsTechnische Universität Dresden
Usage rights of the dataCC-BY-NC-SA-4.0
Discipline(s)Engineeringde
Title of the datasetForming and cutting at high strain rates Part 3: Deep drawing


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  • Experimental data and FE-model for deep drawing DC06 at high strain rates [1]Open Access Icon
    Based on the material properties determined in "Forming and cutting at high strain rates Part 1" and "Part 2", the applicability of the methodology and the material characteristics are verified using a deep drawing process with strain rates up to 100 1/s. This data collection includes the material and failure characteristics of the deep drawing steel DC06 at high strain rates and a FE-model for deep drawing at high velocities. The numerical model as well as experimental and numerical results are first presented in doi.org/10.1088/1757-899X/1238/1/012047.

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