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Metadaten

Weitere mitwirkende Personen, Institutionen oder Unternehmendfg - Funder
Weitere mitwirkende Personen, Institutionen oder UnternehmenKästner, Markus - ProjectLeader
Weitere mitwirkende Personen, Institutionen oder UnternehmenGibmeier, Jens - ProjectLeader
Für den Inhalt der Forschungsdaten verantwortliche Person(en)Schneider, Tom
Für den Inhalt der Forschungsdaten verantwortliche Person(en)Gibmeier, Jens
Für den Inhalt der Forschungsdaten verantwortliche Person(en)Kästner, Markus
KurzbeschreibungThis data set contains various results from (cyclic) tests with 42CrMo4+QT/SAE4140. The first part contains the results of cyclic 4-point bending tests on cuboid specimens. They were used to measure the residual stress. Each specimen was loaded with a certain number of load cycles, after which the test was stopped and the residual stress was measured. From this, the development of the residual stresses under the cyclic load can be determined. The second part of the data set contains data from characterization tests. Various uniaxial tests were carried out on a material sample in order to obtain information for the parameterization of numerical models for predicting the development of residual stresses from the first part of this contribution.
InhaltsverzeichnisPart One - Bending Part Two - Characterization
Weitere Schlagwörterresidual stress measurement
Weitere Schlagwörtercyclic bending
Weitere Schlagwörtercyclic material characterization
Spracheeng
Entstehungsjahr oder Entstehungszeitraum2024
Veröffentlichungsjahr2024
HerausgeberTechnische Universität Dresden
Referenzen auf ergänzende MaterialienIsPartOf: 123456789/6057 (Handle)
Inhalt der ForschungsdatenDataset: Experimental results of residual stress measurements and various cyclic material characterization tests.
Inhaber der NutzungsrechteTechnische Universität Dresden
Nutzungsrechte des DatensatzesCC-BY-NC-4.0
Angabe der FachgebieteEngineeringde
Titel des DatensatzesExperimental analysis of residual stress evolution under cyclic mechanical loading in 42CrMo4+QT (1.7225) including parametrization data


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